Files
desklock/firmware/main/net.c
T
jpmschweitzerandClaude Fable 5 795a1d4baf
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Remove boot-time diagnostic burst (fast re-wedge trigger)
Night-watch caught a 21s wedge (vs 5-13min baseline) landing exactly
on the boot ping-diagnosis + wifi-stats-dump burst, which hammered the
freshly-recovered SDIO link on every reboot. That scaffolding proved
connectivity long ago; removing it makes each recovery light and clean.
ping_target/ping_diag_task kept as no-op symbols for manual use.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
2026-07-15 02:44:04 +02:00

178 lines
6.1 KiB
C

/* Wi-Fi STA via ESP-Hosted (C6 radio) + SNTP, then start the gateway link. */
#include <string.h>
#include "esp_event.h"
#include "esp_log.h"
#include "esp_netif.h"
#include "esp_netif_sntp.h"
#include "esp_wifi.h"
#include "nvs_flash.h"
#include "ping/ping_sock.h"
#include "desklock.h"
#include "secrets.h"
static const char *TAG = "net";
static esp_netif_t *s_netif;
static volatile bool s_got_ip;
static void start_ping_diag(void);
static void ping_diag_task(void *arg);
/* Fully static addressing: every observed SDIO wedge (~300 s uptime) coincides
* with the DHCP T1 renewal window, so the DHCP client stays out of the picture. */
static void static_ip_fallback(void *arg)
{
(void)arg;
vTaskDelay(pdMS_TO_TICKS(1000));
if (!s_got_ip) {
ESP_LOGI(TAG, "static addressing: 192.168.86.53 (DHCP client disabled)");
esp_netif_dhcpc_stop(s_netif);
esp_netif_ip_info_t ip = { 0 };
ip.ip.addr = esp_ip4addr_aton("192.168.86.53");
ip.gw.addr = esp_ip4addr_aton("192.168.86.1");
ip.netmask.addr = esp_ip4addr_aton("255.255.255.0");
esp_netif_set_ip_info(s_netif, &ip);
esp_netif_dns_info_t dns = { 0 };
dns.ip.u_addr.ip4.addr = esp_ip4addr_aton("192.168.86.1");
dns.ip.type = ESP_IPADDR_TYPE_V4;
esp_netif_set_dns_info(s_netif, ESP_NETIF_DNS_MAIN, &dns);
setenv("TZ", "CET-1CEST,M3.5.0,M10.5.0/3", 1);
tzset();
esp_sntp_config_t sntp = ESP_NETIF_SNTP_DEFAULT_CONFIG("pool.ntp.org");
esp_netif_sntp_init(&sntp);
gw_start();
}
vTaskDelete(NULL);
}
static void scan_then_connect(void *arg)
{
(void)arg;
ESP_LOGI(TAG, "scanning for APs…");
if (esp_wifi_scan_start(NULL, true) == ESP_OK) {
uint16_t n = 12;
wifi_ap_record_t recs[12];
if (esp_wifi_scan_get_ap_records(&n, recs) == ESP_OK) {
for (int i = 0; i < n; i++) {
ESP_LOGI(TAG, " ap: '%s' rssi=%d ch=%d auth=%d",
(const char *)recs[i].ssid, recs[i].rssi,
recs[i].primary, recs[i].authmode);
}
}
}
esp_wifi_connect();
vTaskDelete(NULL);
}
static void wifi_event(void *arg, esp_event_base_t base, int32_t id, void *data)
{
(void)arg;
(void)data;
if (base == WIFI_EVENT && id == WIFI_EVENT_STA_START) {
esp_wifi_connect();
} else if (base == WIFI_EVENT && id == WIFI_EVENT_STA_DISCONNECTED) {
wifi_event_sta_disconnected_t *dc = (wifi_event_sta_disconnected_t *)data;
ESP_LOGW(TAG, "wifi disconnected (reason %d), retrying", dc ? dc->reason : -1);
face_set(FACE_ERROR);
vTaskDelay(pdMS_TO_TICKS(3000));
esp_wifi_connect();
} else if (base == IP_EVENT && id == IP_EVENT_STA_GOT_IP) {
ip_event_got_ip_t *ev = (ip_event_got_ip_t *)data;
s_got_ip = true;
/* always-powered appliance: modem sleep wedges the hosted SDIO link */
esp_wifi_set_ps(WIFI_PS_NONE);
ESP_LOGI(TAG, "got ip " IPSTR, IP2STR(&ev->ip_info.ip));
setenv("TZ", "CET-1CEST,M3.5.0,M10.5.0/3", 1);
tzset();
esp_sntp_config_t sntp = ESP_NETIF_SNTP_DEFAULT_CONFIG("pool.ntp.org");
esp_netif_sntp_init(&sntp);
gw_start();
}
}
static void ping_ok(esp_ping_handle_t h, void *arg)
{
(void)arg;
uint32_t seq = 0, ms = 0;
ip_addr_t target;
esp_ping_get_profile(h, ESP_PING_PROF_SEQNO, &seq, sizeof(seq));
esp_ping_get_profile(h, ESP_PING_PROF_TIMEGAP, &ms, sizeof(ms));
esp_ping_get_profile(h, ESP_PING_PROF_IPADDR, &target, sizeof(target));
ESP_LOGI(TAG, "PING %s seq=%u %ums OK", ipaddr_ntoa(&target), (unsigned)seq, (unsigned)ms);
}
static void ping_timeout(esp_ping_handle_t h, void *arg)
{
(void)arg;
uint32_t seq = 0;
ip_addr_t target;
esp_ping_get_profile(h, ESP_PING_PROF_SEQNO, &seq, sizeof(seq));
esp_ping_get_profile(h, ESP_PING_PROF_IPADDR, &target, sizeof(target));
ESP_LOGW(TAG, "PING %s seq=%u TIMEOUT", ipaddr_ntoa(&target), (unsigned)seq);
}
static void ping_target(const char *ip_str)
{
esp_ping_config_t pc = ESP_PING_DEFAULT_CONFIG();
pc.count = 4;
pc.interval_ms = 500;
ipaddr_aton(ip_str, &pc.target_addr);
esp_ping_callbacks_t cbs = {
.on_ping_success = ping_ok,
.on_ping_timeout = ping_timeout,
};
esp_ping_handle_t h;
if (esp_ping_new_session(&pc, &cbs, &h) == ESP_OK) {
esp_ping_start(h);
}
}
static void start_ping_diag(void)
{
static bool started;
if (!started) {
started = true;
xTaskCreate(ping_diag_task, "pingdiag", 4096, NULL, 3, NULL);
}
}
/* boot diagnosis: can the device reach the router at all? then the server? */
static void ping_diag_task(void *arg)
{
/* Boot-time diagnostic burst removed: it stressed the freshly-recovered
* SDIO link on every reboot and correlated with fast re-wedges. Kept as a
* no-op symbol; call ping_target()/esp_wifi_statis_dump() manually if needed. */
(void)arg;
vTaskDelete(NULL);
}
void net_start(void)
{
esp_err_t err = nvs_flash_init();
if (err == ESP_ERR_NVS_NO_FREE_PAGES || err == ESP_ERR_NVS_NEW_VERSION_FOUND) {
ESP_ERROR_CHECK(nvs_flash_erase());
ESP_ERROR_CHECK(nvs_flash_init());
}
ESP_ERROR_CHECK(esp_netif_init());
ESP_ERROR_CHECK(esp_event_loop_create_default());
s_netif = esp_netif_create_default_wifi_sta();
wifi_init_config_t cfg = WIFI_INIT_CONFIG_DEFAULT();
ESP_ERROR_CHECK(esp_wifi_init(&cfg));
ESP_ERROR_CHECK(esp_event_handler_register(WIFI_EVENT, ESP_EVENT_ANY_ID, wifi_event, NULL));
ESP_ERROR_CHECK(esp_event_handler_register(IP_EVENT, IP_EVENT_STA_GOT_IP, wifi_event, NULL));
wifi_config_t wc = { 0 };
wc.sta.scan_method = WIFI_ALL_CHANNEL_SCAN;
strlcpy((char *)wc.sta.ssid, WIFI_SSID, sizeof(wc.sta.ssid));
strlcpy((char *)wc.sta.password, WIFI_PASS, sizeof(wc.sta.password));
ESP_ERROR_CHECK(esp_wifi_set_mode(WIFI_MODE_STA));
ESP_ERROR_CHECK(esp_wifi_set_config(WIFI_IF_STA, &wc));
ESP_ERROR_CHECK(esp_wifi_start());
xTaskCreate(static_ip_fallback, "ipfb", 4096, NULL, 3, NULL);
ESP_LOGI(TAG, "wifi starting, ssid=%s", WIFI_SSID);
}