Added LIPO 2 Reading

This commit is contained in:
2026-06-23 17:54:18 +02:00
parent 490e0ee61f
commit be18b758ed
8 changed files with 81 additions and 60 deletions
+2 -2
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@@ -52,7 +52,7 @@ Zielbild für den Host: Befehle an den Master senden; der Master steuert Slaves
| BMA456 Interrupt | 10 | `bosch456.c` | | BMA456 Interrupt | 10 | `bosch456.c` |
| Taster | 12 | `board_input.c` | | Taster | 12 | `board_input.c` |
| LiPo ADC 1 | 1 | `board_input.c` | | LiPo ADC 1 | 1 | `board_input.c` |
| LiPo ADC 2 | 12 | Entfällt wenn = Taster-GPIO | | LiPo ADC 2 | 11 | `board_input.c` |
**UART (Host-Protokoll):** `UART_NUM_1`, **921600** Baud, 8N1, kein Flow-Control. **UART (Host-Protokoll):** `UART_NUM_1`, **921600** Baud, 8N1, kein Flow-Control.
@@ -405,7 +405,7 @@ Ohne Sensor: `bma456_is_ready() == false`, Firmware läuft weiter.
`board_input.c`: `board_input.c`:
- **Taster** GPIO 12 — Logging bei Druck. - **Taster** GPIO 12 — Logging bei Druck.
- **LiPo-ADC** GPIO 1 (und optional 2, wenn nicht Taster). - **LiPo-ADC** GPIO 1 und GPIO 11.
- Master: `master_monitor_task` aktualisiert Master-Batterie alle 30 s. - Master: `master_monitor_task` aktualisiert Master-Batterie alle 30 s.
- Slave: `slave_send_battery_report_to_master` nach Join, Heartbeat und Query. - Slave: `slave_send_battery_report_to_master` nach Join, Heartbeat und Query.
+2
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@@ -0,0 +1,2 @@
win:
GOOS=windows GOARCH=386 go build .
+1 -1
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@@ -633,7 +633,7 @@ func runBatteryPoller(link *managedSerial, hub *wsHub, interval time.Duration, s
case <-stop: case <-stop:
return return
case <-ticker.C: case <-ticker.C:
if hub.clientCount() == 0 { if !link.IsConnected() {
continue continue
} }
bat, err := link.BatteryStatusPoll(&pb.BatteryStatusRequest{AllClients: true}) bat, err := link.BatteryStatusPoll(&pb.BatteryStatusRequest{AllClients: true})
+23 -9
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@@ -769,21 +769,35 @@
}, },
applyBatterySamples(samples) { applyBatterySamples(samples) {
if (!samples?.length) return; if (!samples?.length) return;
const master = { ...(this.state.master || {}) };
const clients = [...(this.state.clients || [])];
let masterChanged = false;
let clientsChanged = false;
for (const s of samples) { for (const s of samples) {
if (s.client_id === 0) { if (s.client_id === 0) {
if (!this.state.master) this.state.master = {}; master.lipo1 = s.lipo1;
this.state.master.lipo1 = s.lipo1; master.lipo2 = s.lipo2;
this.state.master.lipo2 = s.lipo2; master.battery_age_ms = s.age_ms;
this.state.master.battery_age_ms = s.age_ms; masterChanged = true;
continue; continue;
} }
const c = (this.state.clients || []).find((x) => x.id === s.client_id); const idx = clients.findIndex((x) => x.id === s.client_id);
if (c) { if (idx >= 0) {
c.lipo1 = s.lipo1; clients[idx] = {
c.lipo2 = s.lipo2; ...clients[idx],
c.battery_age_ms = s.age_ms; lipo1: s.lipo1,
lipo2: s.lipo2,
battery_age_ms: s.age_ms,
};
clientsChanged = true;
} }
} }
if (!masterChanged && !clientsChanged) return;
this.state = {
...this.state,
...(masterChanged ? { master } : {}),
...(clientsChanged ? { clients } : {}),
};
}, },
async refreshBattery() { async refreshBattery() {
if (!this.state?.uart_connected) return; if (!this.state?.uart_connected) return;
+2 -2
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@@ -55,7 +55,7 @@ Pins (`powerpod.h`):
| BMA456 INT | 10 | | BMA456 INT | 10 |
| Button (Taster) | 12 | | Button (Taster) | 12 |
| LiPo sense 1 (ADC) | 1 | | LiPo sense 1 (ADC) | 1 |
| LiPo sense 2 (ADC) | 12 (skipped if same as button) | | LiPo sense 2 (ADC) | 11 |
> **TODO:** GPIO assignments above are provisional; confirm pinning against the real board before release. > **TODO:** GPIO assignments above are provisional; confirm pinning against the real board before release.
@@ -563,7 +563,7 @@ Target: ESP32-S3. Close serial monitor on the UART adapter port before running `
| `bosch456.c/h` | BMA456H I2C driver, accel poll, on-demand read, tap INT, deadzone filter | | `bosch456.c/h` | BMA456H I2C driver, accel poll, on-demand read, tap INT, deadzone filter |
| `cmd/cmd_tap_notify.c` | UART `TAP_NOTIFY` — ESP-NOW tap notify config | | `cmd/cmd_tap_notify.c` | UART `TAP_NOTIFY` — ESP-NOW tap notify config |
| `cmd/cmd_cache_status.c` | UART `CACHE_STATUS` — subscribed accel + tap cache poll | | `cmd/cmd_cache_status.c` | UART `CACHE_STATUS` — subscribed accel + tap cache poll |
| `board_input.c/h` | Taster GPIO12, LiPo ADC on GPIO1 / GPIO12 | | `board_input.c/h` | Taster GPIO12, LiPo ADC on GPIO1 / GPIO11 |
| `pod_settings.c/h` | NVS persistence (accel deadzone, …) | | `pod_settings.c/h` | NVS persistence (accel deadzone, …) |
| `led_ring.c/h` | LED ring (digit display, progress bar) | | `led_ring.c/h` | LED ring (digit display, progress bar) |
| `cmd/cmd_led_ring.c` | UART `LED_RING` progress command | | `cmd/cmd_led_ring.c` | UART `LED_RING` progress command |
+43 -33
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@@ -1,5 +1,6 @@
#include "board_input.h" #include "board_input.h"
#include "powerpod.h" #include "powerpod.h"
#include "client_registry.h"
#include "driver/gpio.h" #include "driver/gpio.h"
#include "esp_adc/adc_oneshot.h" #include "esp_adc/adc_oneshot.h"
#include "esp_log.h" #include "esp_log.h"
@@ -18,34 +19,51 @@ static const char *TAG_LIPO = "[LIPO]";
#define LIPO_ADC_MAX_RAW 4095 #define LIPO_ADC_MAX_RAW 4095
static QueueHandle_t s_button_queue; static QueueHandle_t s_button_queue;
static adc_oneshot_unit_handle_t s_adc;
static bool s_lipo1_ok;
static bool s_lipo2_ok;
static adc_channel_t s_lipo1_ch;
static adc_channel_t s_lipo2_ch;
static esp_err_t adc_init_channel(int gpio, adc_channel_t *out_ch, bool *out_ok) { typedef struct {
adc_unit_t unit; adc_oneshot_unit_handle_t unit;
esp_err_t err = adc_oneshot_io_to_channel(gpio, &unit, out_ch); adc_channel_t ch;
bool ok;
} lipo_adc_t;
static lipo_adc_t s_lipo1;
static lipo_adc_t s_lipo2;
static esp_err_t adc_init_gpio(int gpio, lipo_adc_t *out) {
out->unit = NULL;
out->ok = false;
adc_unit_t unit_id;
esp_err_t err = adc_oneshot_io_to_channel(gpio, &unit_id, &out->ch);
if (err != ESP_OK) { if (err != ESP_OK) {
ESP_LOGW(TAG_LIPO, "GPIO%d not an ADC channel: %s", gpio, esp_err_to_name(err)); ESP_LOGW(TAG_LIPO, "GPIO%d not an ADC channel: %s", gpio, esp_err_to_name(err));
*out_ok = false;
return err; return err;
} }
if (unit != ADC_UNIT_1) {
ESP_LOGW(TAG_LIPO, "GPIO%d on ADC unit %d (expected ADC1)", gpio, (int)unit); adc_oneshot_unit_init_cfg_t init_cfg = {
.unit_id = unit_id,
};
err = adc_oneshot_new_unit(&init_cfg, &out->unit);
if (err != ESP_OK) {
ESP_LOGW(TAG_LIPO, "ADC unit %d init GPIO%d failed: %s", (int)unit_id, gpio,
esp_err_to_name(err));
return err;
} }
adc_oneshot_chan_cfg_t chan_cfg = { adc_oneshot_chan_cfg_t chan_cfg = {
.atten = ADC_ATTEN_DB_12, .atten = ADC_ATTEN_DB_12,
.bitwidth = ADC_BITWIDTH_DEFAULT, .bitwidth = ADC_BITWIDTH_DEFAULT,
}; };
err = adc_oneshot_config_channel(s_adc, *out_ch, &chan_cfg); err = adc_oneshot_config_channel(out->unit, out->ch, &chan_cfg);
if (err != ESP_OK) { if (err != ESP_OK) {
ESP_LOGW(TAG_LIPO, "ADC config GPIO%d failed: %s", gpio, esp_err_to_name(err)); ESP_LOGW(TAG_LIPO, "ADC config GPIO%d failed: %s", gpio, esp_err_to_name(err));
*out_ok = false; adc_oneshot_del_unit(out->unit);
out->unit = NULL;
return err; return err;
} }
*out_ok = true;
out->ok = true;
ESP_LOGI(TAG_LIPO, "GPIO%d ready (ADC unit %d)", gpio, (int)unit_id);
return ESP_OK; return ESP_OK;
} }
@@ -56,15 +74,15 @@ static uint32_t raw_to_mv(int raw) {
return (uint32_t)((raw * LIPO_ADC_FULL_SCALE_MV) / LIPO_ADC_MAX_RAW); return (uint32_t)((raw * LIPO_ADC_FULL_SCALE_MV) / LIPO_ADC_MAX_RAW);
} }
static void sample_one_channel(adc_channel_t ch, bool ok, uint32_t *mv_out, static void sample_one_channel(const lipo_adc_t *adc, uint32_t *mv_out,
bool *valid_out) { bool *valid_out) {
*valid_out = false; *valid_out = false;
*mv_out = 0; *mv_out = 0;
if (!ok || s_adc == NULL) { if (adc == NULL || !adc->ok || adc->unit == NULL) {
return; return;
} }
int raw = 0; int raw = 0;
if (adc_oneshot_read(s_adc, ch, &raw) == ESP_OK) { if (adc_oneshot_read(adc->unit, adc->ch, &raw) == ESP_OK) {
*valid_out = true; *valid_out = true;
*mv_out = raw_to_mv(raw); *mv_out = raw_to_mv(raw);
} }
@@ -75,8 +93,8 @@ void board_input_read_lipo(board_lipo_reading_t *out) {
return; return;
} }
memset(out, 0, sizeof(*out)); memset(out, 0, sizeof(*out));
sample_one_channel(s_lipo1_ch, s_lipo1_ok, &out->lipo1_mv, &out->lipo1_valid); sample_one_channel(&s_lipo1, &out->lipo1_mv, &out->lipo1_valid);
sample_one_channel(s_lipo2_ch, s_lipo2_ok, &out->lipo2_mv, &out->lipo2_valid); sample_one_channel(&s_lipo2, &out->lipo2_mv, &out->lipo2_valid);
} }
static void lipo_monitor_task(void *param) { static void lipo_monitor_task(void *param) {
@@ -87,6 +105,7 @@ static void lipo_monitor_task(void *param) {
while (1) { while (1) {
board_lipo_reading_t reading; board_lipo_reading_t reading;
board_input_read_lipo(&reading); board_input_read_lipo(&reading);
client_registry_set_master_battery(&reading);
ESP_LOGI(TAG_LIPO, ESP_LOGI(TAG_LIPO,
"LIPO1 GPIO%d %s %lu mV LIPO2 GPIO%d %s %lu mV", "LIPO1 GPIO%d %s %lu mV LIPO2 GPIO%d %s %lu mV",
@@ -166,28 +185,19 @@ static esp_err_t init_button(void) {
} }
static esp_err_t init_lipo_adc(void) { static esp_err_t init_lipo_adc(void) {
adc_oneshot_unit_init_cfg_t init_cfg = { memset(&s_lipo1, 0, sizeof(s_lipo1));
.unit_id = ADC_UNIT_1, memset(&s_lipo2, 0, sizeof(s_lipo2));
};
esp_err_t err = adc_oneshot_new_unit(&init_cfg, &s_adc);
if (err != ESP_OK) {
ESP_LOGW(TAG_LIPO, "ADC init failed: %s", esp_err_to_name(err));
return err;
}
adc_init_channel(V_LIPO_1_GPIO, &s_lipo1_ch, &s_lipo1_ok); adc_init_gpio(V_LIPO_1_GPIO, &s_lipo1);
if (V_LIPO_2_GPIO == TASTER_GPIO) { if (V_LIPO_2_GPIO == TASTER_GPIO) {
ESP_LOGW(TAG_LIPO, "LIPO2 on GPIO%d skipped (button uses same pin)", ESP_LOGW(TAG_LIPO, "LIPO2 on GPIO%d skipped (button uses same pin)",
V_LIPO_2_GPIO); V_LIPO_2_GPIO);
s_lipo2_ok = false;
} else { } else {
adc_init_channel(V_LIPO_2_GPIO, &s_lipo2_ch, &s_lipo2_ok); adc_init_gpio(V_LIPO_2_GPIO, &s_lipo2);
} }
if (!s_lipo1_ok && !s_lipo2_ok) { if (!s_lipo1.ok && !s_lipo2.ok) {
adc_oneshot_del_unit(s_adc);
s_adc = NULL;
return ESP_FAIL; return ESP_FAIL;
} }
+6 -10
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@@ -33,18 +33,14 @@ static bool append_battery_sample(alox_BatteryStatusResponse *resp,
return lipo1_valid || lipo2_valid; return lipo1_valid || lipo2_valid;
} }
static bool append_master_cached(alox_BatteryStatusResponse *resp) { static bool append_master_sample(alox_BatteryStatusResponse *resp) {
board_lipo_reading_t reading; board_lipo_reading_t reading;
uint32_t age_ms = 0;
if (!client_registry_get_master_battery(&reading, &age_ms)) { board_input_read_lipo(&reading);
board_input_read_lipo(&reading); client_registry_set_master_battery(&reading);
client_registry_set_master_battery(&reading);
age_ms = 0;
}
return append_battery_sample(resp, 0, reading.lipo1_valid, reading.lipo1_mv, return append_battery_sample(resp, 0, reading.lipo1_valid, reading.lipo1_mv,
reading.lipo2_valid, reading.lipo2_mv, age_ms); reading.lipo2_valid, reading.lipo2_mv, 0);
} }
static bool append_slave_cached(alox_BatteryStatusResponse *resp, static bool append_slave_cached(alox_BatteryStatusResponse *resp,
@@ -102,7 +98,7 @@ static void handle_battery_status(const uint8_t *data, size_t len) {
bool any = false; bool any = false;
if (req.all_clients) { if (req.all_clients) {
any |= append_master_cached(resp); any |= append_master_sample(resp);
for (size_t i = 0; i < client_registry_count(); i++) { for (size_t i = 0; i < client_registry_count(); i++) {
const client_info_t *client = client_registry_at(i); const client_info_t *client = client_registry_at(i);
if (client == NULL) { if (client == NULL) {
@@ -113,7 +109,7 @@ static void handle_battery_status(const uint8_t *data, size_t len) {
ESP_LOGI(TAG, "battery cache all_clients → %u samples", ESP_LOGI(TAG, "battery cache all_clients → %u samples",
(unsigned)resp->samples_count); (unsigned)resp->samples_count);
} else if (req.client_id == 0) { } else if (req.client_id == 0) {
any = append_master_cached(resp); any = append_master_sample(resp);
ESP_LOGI(TAG, "battery cache master"); ESP_LOGI(TAG, "battery cache master");
} else { } else {
const client_info_t *client = client_registry_find_by_id(req.client_id); const client_info_t *client = client_registry_find_by_id(req.client_id);
+2 -3
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@@ -11,9 +11,8 @@
/** Front-panel button (active low, internal pull-up). */ /** Front-panel button (active low, internal pull-up). */
#define TASTER_GPIO 12 #define TASTER_GPIO 12
/** LiPo voltage sense inputs (ADC1-capable GPIOs). */ /** LiPo voltage sense inputs (ADC-capable GPIOs; GPIO11 = ADC2 on ESP32-S3). */
#define V_LIPO_1_GPIO 1 #define V_LIPO_1_GPIO 1
/** Shares GPIO with TASTER on current bench wiring; second ADC is skipped in board_input.c. */ #define V_LIPO_2_GPIO 11
#define V_LIPO_2_GPIO 12
#endif #endif