Files
immich-frame/src/wifi_manager.cpp
cottongin 73b8dde686 feat: deep sleep single-fetch with probabilistic weighting
Refactor timerWakeCycle() to fetch a single random photo per wake
using cycle-mode-aware server-side filtering via Immich's
POST /api/search/random endpoint.

Changes:
- Add fetchOneRandomAssetId() to ImmichClient with support for
  isFavorite, takenAfter, takenBefore filter parameters
- Add timer_last_date NVS field for chronological cursor persistence
- Implement probabilistic filter selection per cycle mode:
  - Random: unfiltered size=1
  - Chronological/ReverseChronological: date cursor in NVS
  - FavoritesWeighted: 66% favorites, 33% unfiltered
  - WeightedChronological: 66% recent (30d), 33% unfiltered
  - WeightedReverseChronological: 66% older (30d), 33% unfiltered
- Add retry loop with filter relaxation on empty results
- Initialize hardware RTC (RX8130CE) firmware-wide:
  - Seed system clock from RTC at boot (immediate time)
  - NTP sync after WiFi connect, write back to RTC
- Add time_utils.h with isoNow(), isoNowMinus30d(), hasValidTime()

Normal mode (PhotoQueue + displayTask) is completely untouched.

Co-authored-by: Cursor <cursoragent@cursor.com>
2026-08-04 20:57:59 -04:00

129 lines
3.3 KiB
C++

#include "wifi_manager.h"
#include <WiFi.h>
#include <ESPmDNS.h>
#include <M5Unified.h>
#include <time.h>
#include <sys/time.h>
#include "config.h"
void WiFiManager::begin(SettingsManager& settings) {
_settings = &settings;
if (!_settings->isProvisioned()) {
Serial.println("[wifi] Not provisioned — starting AP");
startAP();
return;
}
startStation();
}
bool WiFiManager::isConnected() {
return WiFi.status() == WL_CONNECTED;
}
bool WiFiManager::isAPMode() {
return _apMode;
}
String WiFiManager::getIP() {
if (_apMode) {
return WiFi.softAPIP().toString();
}
return WiFi.localIP().toString();
}
int WiFiManager::getRSSI() {
if (_apMode) return 0;
return WiFi.RSSI();
}
void WiFiManager::startAP() {
WiFi.disconnect(true);
WiFi.mode(WIFI_AP);
WiFi.softAP("PaperColor-Setup");
_apMode = true;
Serial.printf("[wifi] AP started: PaperColor-Setup, IP: %s\n",
WiFi.softAPIP().toString().c_str());
}
void WiFiManager::startStation() {
Settings s = _settings->get();
WiFi.disconnect(true);
WiFi.mode(WIFI_STA);
_apMode = false;
Serial.printf("[wifi] Connecting to: %s\n", s.wifi_ssid.c_str());
for (_retryCount = 0; _retryCount < WIFI_MAX_RETRIES; _retryCount++) {
if (attemptConnection(s.wifi_ssid, s.wifi_pass)) {
Serial.printf("[wifi] Connected! IP: %s, RSSI: %d\n",
WiFi.localIP().toString().c_str(), WiFi.RSSI());
WiFi.setSleep(WIFI_PS_MIN_MODEM);
syncNTP();
setupMDNS("papercolor");
return;
}
Serial.printf("[wifi] Attempt %d/%d failed\n", _retryCount + 1, WIFI_MAX_RETRIES);
}
Serial.println("[wifi] All attempts failed — falling back to AP mode");
startAP();
}
void WiFiManager::setupMDNS(const char* hostname) {
if (MDNS.begin(hostname)) {
MDNS.addService("http", "tcp", 80);
Serial.printf("[wifi] mDNS: %s.local\n", hostname);
} else {
Serial.println("[wifi] mDNS failed to start");
}
}
bool WiFiManager::attemptConnection(const String& ssid, const String& pass) {
WiFi.begin(ssid.c_str(), pass.c_str());
unsigned long start = millis();
while (WiFi.status() != WL_CONNECTED) {
if (millis() - start > WIFI_CONNECT_TIMEOUT_MS) {
return false;
}
delay(100);
}
return true;
}
void WiFiManager::syncNTP() {
configTime(0, 0, "pool.ntp.org", "time.nist.gov");
// Wait up to 5 seconds for NTP sync
unsigned long start = millis();
time_t now = 0;
while (now < 1600000000 && (millis() - start) < 5000) {
delay(100);
time(&now);
}
if (now < 1600000000) {
Serial.println("[wifi] NTP sync timed out");
return;
}
// Write synced time to hardware RTC
struct tm t;
gmtime_r(&now, &t);
m5::rtc_datetime_t dt;
dt.date.year = t.tm_year + 1900;
dt.date.month = t.tm_mon + 1;
dt.date.date = t.tm_mday;
dt.time.hours = t.tm_hour;
dt.time.minutes = t.tm_min;
dt.time.seconds = t.tm_sec;
M5.Rtc.setDateTime(dt);
Serial.printf("[wifi] NTP synced: %04d-%02d-%02d %02d:%02d:%02d UTC, written to RTC\n",
dt.date.year, dt.date.month, dt.date.date,
dt.time.hours, dt.time.minutes, dt.time.seconds);
}