Better handling of fallback wifi networks
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44
.vscode/c_cpp_properties.json
vendored
44
.vscode/c_cpp_properties.json
vendored
@ -1,23 +1,23 @@
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{
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"configurations": [
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{
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"name": "ESP-IDF",
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"cStandard": "c11",
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"cppStandard": "c++17",
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"compileCommands": "${workspaceFolder}/build/compile_commands.json",
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"includePath": [
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"~/esp/esp-idf/components/**",
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"~/esp/esp-idf/components/arduino/libraries/**",
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"${workspaceFolder}/**"
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],
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"browse": {
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"path": [
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"~/esp/esp-idf/components",
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"${workspaceFolder}"
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],
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"limitSymbolsToIncludedHeaders": false
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}
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}
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],
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"version": 4
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{
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"configurations": [
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{
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"name": "ESP-IDF",
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"cStandard": "c11",
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"cppStandard": "c++17",
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"compileCommands": "${workspaceFolder}/build/compile_commands.json",
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"includePath": [
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"~/esp/esp-idf/components/**",
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"~/esp/esp-idf/components/arduino/libraries/**",
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"${workspaceFolder}/**"
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],
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"browse": {
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"path": [
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"~/esp/esp-idf/components",
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"${workspaceFolder}"
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],
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"limitSymbolsToIncludedHeaders": false
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}
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}
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],
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"version": 4
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}
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158
.vscode/settings.json
vendored
158
.vscode/settings.json
vendored
@ -1,79 +1,79 @@
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"future": "cpp",
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"optional": "cpp",
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"new": "cpp",
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"condition_variable": "cpp",
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"algorithm": "cpp",
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"numeric": "cpp",
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"functional": "cpp",
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"deque": "cpp",
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"list": "cpp",
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"vector": "cpp",
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"unordered_map": "cpp",
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"istream": "cpp",
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"ostream": "cpp",
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"sstream": "cpp",
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"unordered_set": "cpp",
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"system_error": "cpp",
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"atomic": "cpp",
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"strstream": "cpp",
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"cctype": "cpp",
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"chrono": "cpp",
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"clocale": "cpp",
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"cmath": "cpp",
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"codecvt": "cpp",
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"csignal": "cpp",
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"cstdarg": "cpp",
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"cstddef": "cpp",
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"cstdint": "cpp",
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"cstdio": "cpp",
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"cstdlib": "cpp",
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"cstring": "cpp",
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"ctime": "cpp",
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"cwchar": "cpp",
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"cwctype": "cpp",
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"exception": "cpp",
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"iterator": "cpp",
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"map": "cpp",
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"memory_resource": "cpp",
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"ratio": "cpp",
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"set": "cpp",
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"type_traits": "cpp",
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"initializer_list": "cpp",
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"mutex": "cpp",
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"thread": "cpp",
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"cinttypes": "cpp",
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"typeinfo": "cpp",
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"bit": "cpp",
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"compare": "cpp",
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"concepts": "cpp",
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"netfwd": "cpp",
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"numbers": "cpp",
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"semaphore": "cpp",
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"stop_token": "cpp",
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"*.inc": "cpp"
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},
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"cmake.configureOnOpen": false,
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"C_Cpp.dimInactiveRegions": true,
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"editor.autoIndent": "full",
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{
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"*.ipp": "cpp",
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"*.tcc": "cpp",
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"fstream": "cpp",
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"array": "cpp",
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"string": "cpp",
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"new": "cpp",
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"condition_variable": "cpp",
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"algorithm": "cpp",
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"streambuf": "cpp",
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"numeric": "cpp",
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"functional": "cpp",
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"deque": "cpp",
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"list": "cpp",
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"vector": "cpp",
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"unordered_map": "cpp",
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"istream": "cpp",
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"ostream": "cpp",
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"sstream": "cpp",
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"unordered_set": "cpp",
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"system_error": "cpp",
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"atomic": "cpp",
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"strstream": "cpp",
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"cctype": "cpp",
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"chrono": "cpp",
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"clocale": "cpp",
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"cmath": "cpp",
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"codecvt": "cpp",
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"csignal": "cpp",
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"cstdarg": "cpp",
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"cstddef": "cpp",
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"cstdint": "cpp",
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"cstdio": "cpp",
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"cstdlib": "cpp",
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"cstring": "cpp",
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"ctime": "cpp",
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"cwchar": "cpp",
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"cwctype": "cpp",
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"exception": "cpp",
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"iterator": "cpp",
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"map": "cpp",
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"memory_resource": "cpp",
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"ratio": "cpp",
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"set": "cpp",
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"tuple": "cpp",
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"type_traits": "cpp",
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"utility": "cpp",
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"initializer_list": "cpp",
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"iomanip": "cpp",
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"iosfwd": "cpp",
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"iostream": "cpp",
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"limits": "cpp",
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"mutex": "cpp",
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"stdexcept": "cpp",
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"thread": "cpp",
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"cinttypes": "cpp",
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"typeinfo": "cpp",
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"bit": "cpp",
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"compare": "cpp",
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"concepts": "cpp",
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"netfwd": "cpp",
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"numbers": "cpp",
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"semaphore": "cpp",
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"stop_token": "cpp",
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"*.inc": "cpp"
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},
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"cmake.configureOnOpen": false,
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"C_Cpp.dimInactiveRegions": true,
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"editor.autoIndent": "full",
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}
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@ -44,6 +44,9 @@ void App::init()
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ESP_LOGI(TAG, "mqtt_id: %s, wifi mac: %02x:%02x:%02x:%02x:%02x:%02x well_id: %u, group_id: %u", SETTINGS.mqtt.device_id,
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mac[0], mac[1], mac[2], mac[3], mac[4], mac[5], SETTINGS.device.tata_id, SETTINGS.device.group_id);
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ESP_LOGW(TAG, "Ver:1.00");
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m_led = new Led(LED_PIN);
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m_wifi = new Wifi();
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m_commandProcessor = new CommandProcessor(*this);
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459
main/Wifi.cpp
459
main/Wifi.cpp
@ -10,18 +10,102 @@
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#include <esp_wifi.h>
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#include "esp_phy_init.h"
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#include "esp_ota_ops.h"
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static const char *TAG = "Wifi";
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#define IGNORE_SSID_MINS 20
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using namespace std::placeholders;
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const char* Wifi::FALLBACK_NETWORKS[] = {"CBX_IoT", "welltest"};
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const char* Wifi::FALLBACK_PASSWORDS[] = {"69696969", "well1234"};
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const int Wifi::NUM_FALLBACK_NETWORKS = 2;
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bool Wifi::shouldPerformBootupCalibration()
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{
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uint32_t reset_reason = esp_reset_reason();
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ESP_LOGI(TAG, "Checking if bootup calibration needed, reset reason: %d", reset_reason);
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// Always calibrate after these conditions:
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bool should_calibrate = false;
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// 1. After OTA update
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const esp_partition_t* running_partition = esp_ota_get_running_partition();
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const esp_partition_t* boot_partition = esp_ota_get_boot_partition();
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if (running_partition != boot_partition) {
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ESP_LOGW(TAG, "Bootup calibration: Running from different partition (OTA update detected)");
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should_calibrate = true;
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}
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// 2. After power-related resets that might affect calibration
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if(reset_reason == ESP_RST_BROWNOUT) {
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ESP_LOGW(TAG, "Bootup calibration: Brown-out reset detected");
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should_calibrate = true;
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}
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// 3. After watchdog resets (system instability)
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if(reset_reason == ESP_RST_TASK_WDT || reset_reason == ESP_RST_WDT) {
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ESP_LOGW(TAG, "Bootup calibration: Watchdog reset detected");
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should_calibrate = true;
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}
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// 4. After panic/exception resets
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if(reset_reason == ESP_RST_PANIC) {
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ESP_LOGW(TAG, "Bootup calibration: Panic reset detected");
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should_calibrate = true;
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}
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// 5. First boot after firmware flash (power-on reset)
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if(reset_reason == ESP_RST_POWERON) {
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ESP_LOGI(TAG, "Bootup calibration: Power-on reset (fresh boot or firmware flash)");
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should_calibrate = true;
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}
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// 6. Check if automatic calibration occurred (failed to load RF data)
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// This would require checking a flag set during phy_init
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// For now, we'll assume if we got this far, we might need it
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return should_calibrate;
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}
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void Wifi::performBootupCalibration()
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{
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if(m_bootup_calibration_done) {
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ESP_LOGD(TAG, "Bootup calibration already performed");
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return;
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}
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ESP_LOGW(TAG, "Performing WiFi calibration after boot-up...");
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// Ensure WiFi is off before calibration
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WiFi.mode(WIFI_OFF);
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delay(1000);
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// Clear any existing calibration data to force fresh calibration
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esp_phy_erase_cal_data_in_nvs();
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ESP_LOGI(TAG, "Cleared existing PHY calibration data");
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// Initialize WiFi with fresh calibration
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WiFi.mode(WIFI_STA);
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delay(2000); // Give time for calibration to complete
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// Turn off WiFi again to save power until actually needed
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WiFi.mode(WIFI_OFF);
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delay(500);
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m_bootup_calibration_done = true;
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ESP_LOGW(TAG, "Bootup WiFi calibration completed");
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}
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Wifi::Wifi()
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{
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esp_log_level_set("wifi", ESP_LOG_WARN);
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esp_log_level_set("wifi_init", ESP_LOG_INFO);
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// Add WiFi configuration here
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if(shouldPerformBootupCalibration()) {
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performBootupCalibration();
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}
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esp_wifi_set_country_code("US", true); // Or your country code
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//WiFi.setSleep(false); // Disable power saving if BT is enabled, do not do this!
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@ -169,11 +253,24 @@ bool Wifi::shouldRecalibrateRadio(int failed_ssid_index)
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bool Wifi::isSSIDVisible(const char* ssid)
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{
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ESP_LOGI(TAG, "Scanning for SSID '%s' visibility...", ssid);
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ESP_LOGI(TAG, "=== Starting SSID visibility scan for '%s' ===", ssid);
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int num_networks = WiFi.scanNetworks(false, false, false, 500);
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ESP_LOGI(TAG, "Found %d networks during visibility check", num_networks);
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wl_status_t status = WiFi.status();
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ESP_LOGI(TAG, "Current WiFi status before scan: %d", status);
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// Force WiFi into clean state - more aggressive approach
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WiFi.disconnect(true); // true = also forget credentials temporarily
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delay(500);
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WiFi.mode(WIFI_OFF); // Completely turn off WiFi
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delay(500);
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WiFi.mode(WIFI_STA); // Turn back on in station mode
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delay(1000); // Longer delay for complete initialization
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ESP_LOGI(TAG, "Calling WiFi.scanNetworks(false, false, false, 0)...");
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int num_networks = WiFi.scanNetworks(false, false, false, 0);
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ESP_LOGI(TAG, "=== Scan completed, found %d networks ===", num_networks);
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for(int n = 0; n < num_networks; n++)
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{
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if(strcmp(WiFi.SSID(n).c_str(), ssid) == 0)
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@ -205,7 +302,7 @@ void Wifi::performRadioRecalibration()
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ESP_LOGW(TAG, "Radio recalibration completed - WiFi will reinitialize on next connection attempt");
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// Brief delay to let the radio settle
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delay(2000);
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delay(3000);
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}
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@ -306,16 +403,33 @@ Wifi::WIFI_STATUS Wifi::waitForConnection()
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// Also modify startConnecting to handle recalibration for fallback network
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Wifi::WIFI_STATUS Wifi::connectToDefault()
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{
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const char* default_ssid = "CBX_IoT";
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const char* default_password = "69696969";
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// Try each fallback network in sequence using class members
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for(int i = 0; i < NUM_FALLBACK_NETWORKS; i++)
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{
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ESP_LOGI(TAG, "Trying fallback network %d: %s...", i + 1, FALLBACK_NETWORKS[i]);
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WIFI_STATUS status = connectToFallbackNetwork(FALLBACK_NETWORKS[i], FALLBACK_PASSWORDS[i]);
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if(status == WIFI_STATUS::CONNECTED)
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{
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ESP_LOGI(TAG, "Connected to fallback network %s", FALLBACK_NETWORKS[i]);
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return WIFI_STATUS::CONNECTED;
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}
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}
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ESP_LOGW(TAG, "All %d fallback networks failed", NUM_FALLBACK_NETWORKS);
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return WIFI_STATUS::NOT_CONNECTED;
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}
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// New helper method to connect to a specific fallback network
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Wifi::WIFI_STATUS Wifi::connectToFallbackNetwork(const char* ssid, const char* password)
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{
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IPAddress local_IP(0, 0, 0, 0);
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IPAddress gateway(0, 0, 0, 0);
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IPAddress subnet(SETTINGS.wifi.subnet_mask);
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IPAddress primaryDNS(SETTINGS.wifi.dns_primary);
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IPAddress secondaryDNS(SETTINGS.wifi.dns_secondary);
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ESP_LOGI(TAG, "Connecting to default network %s...", default_ssid);
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ESP_LOGI(TAG, "Connecting to fallback network %s...", ssid);
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delay(1000);
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@ -329,156 +443,285 @@ Wifi::WIFI_STATUS Wifi::connectToDefault()
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WiFi.mode(WIFI_STA);
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WiFi.config(local_IP, gateway, subnet, primaryDNS, secondaryDNS);
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WiFi.begin(default_ssid, default_password);
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WiFi.begin(ssid, password);
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int status = WiFi.waitForConnectResult(10000);
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if(status == WL_CONNECTED)
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{
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ESP_LOGI(TAG, "Connected to default network");
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ESP_LOGI(TAG, "Connected to fallback network %s", ssid);
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return WIFI_STATUS::CONNECTED;
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}
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delay(1000);
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WiFi.disconnect();
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ESP_LOGW(TAG, "Failed to connect to default network, status: %d", status);
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ESP_LOGW(TAG, "Failed to connect to fallback network %s, status: %d", ssid, status);
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return WIFI_STATUS::NOT_CONNECTED;
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}
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/// @brief Connects to wifi. Returns immediately if already connected.
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/// @return WH_OK | WH_ERR_WIFI_NOT_PROVISIONED
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// Modified startConnecting method to handle dual fallback with recalibration
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// Modified startConnecting method - no hardcoded networks
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Wifi::WIFI_STATUS Wifi::startConnecting()
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{
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if(WiFi.isConnected())
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return WIFI_STATUS::CONNECTED;
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// Try provisioned networks first if any exist
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if(SETTINGS.wifi.num > 0)
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{
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// if only one network is provisioned
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if(SETTINGS.wifi.num == 1)
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{
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SETTINGS.wifi.selected = 0;
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for(int n = 0; n < 7; n++)
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{
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if(connectTo(SETTINGS.wifi.selected) == WIFI_STATUS::CONNECTED)
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return WIFI_STATUS::CONNECTED;
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WiFi.disconnect();
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}
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ESP_LOGW(TAG, "Failed to connect to provisioned network");
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}
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else
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{
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// multiple networks are provisioned. Use either specific network or scan for highest rssi
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memset(m_ignored, 0, SETTINGS_NUM_WIFI_ENTRIES);
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int ssid_ix = SETTINGS.wifi.selected;
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if(SETTINGS.wifi.always_scan_before_connect || SETTINGS.wifi.selected >= SETTINGS.wifi.num)
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ssid_ix = scan();
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if(ssid_ix >= 0)
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{
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if(connectTo(ssid_ix) == WIFI_STATUS::CONNECTED)
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{
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SETTINGS.wifi.selected = ssid_ix;
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return WIFI_STATUS::CONNECTED;
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}
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// didn't work. go through them all giving priority to one with highest rssi
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m_ignored[ssid_ix] = IGNORE_SSID_MINS;
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do
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{
|
||||
ssid_ix = scan();
|
||||
if(ssid_ix >= 0)
|
||||
{
|
||||
if(connectTo(ssid_ix) == WIFI_STATUS::CONNECTED)
|
||||
return WIFI_STATUS::CONNECTED;
|
||||
else
|
||||
m_ignored[ssid_ix] = IGNORE_SSID_MINS;
|
||||
}
|
||||
else
|
||||
break;
|
||||
|
||||
} while(true);
|
||||
|
||||
// that failed too, try them all again round-robin
|
||||
for(int m = 0; m < 3; m++)
|
||||
{
|
||||
for(int n = 0; n < SETTINGS.wifi.num; n++)
|
||||
{
|
||||
if(connectTo(n) == WIFI_STATUS::CONNECTED)
|
||||
return WIFI_STATUS::CONNECTED;
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
ESP_LOGW(TAG, "Failed to connect to any provisioned networks");
|
||||
}
|
||||
}
|
||||
else
|
||||
{
|
||||
ESP_LOGW(TAG, "No networks provisioned");
|
||||
}
|
||||
|
||||
// Fallback: Try default WiFi network CBX_IoT
|
||||
ESP_LOGI(TAG, "Attempting fallback connection to default network CBX_IoT...");
|
||||
|
||||
WIFI_STATUS fallback_status = connectToDefault();
|
||||
if(fallback_status == WIFI_STATUS::CONNECTED)
|
||||
{
|
||||
ESP_LOGI(TAG, "Successfully connected to default network");
|
||||
ESP_LOGW(TAG, "===== START CONNECTING =====");
|
||||
|
||||
// Diagnostic logging of saved networks
|
||||
ESP_LOGW(TAG, "Provisioned networks: %d", SETTINGS.wifi.num);
|
||||
for(int i = 0; i < SETTINGS.wifi.num; i++) {
|
||||
ESP_LOGW(TAG, "[%d] SSID: '%s'", i, SETTINGS.wifi.entry[i].ssid);
|
||||
}
|
||||
|
||||
if(::WiFi.isConnected()) {
|
||||
ESP_LOGW(TAG, "Already connected");
|
||||
return WIFI_STATUS::CONNECTED;
|
||||
}
|
||||
|
||||
// Check if we should recalibrate for the fallback network
|
||||
ESP_LOGW(TAG, "Fallback connection failed, checking if recalibration needed...");
|
||||
// Try provisioned networks first if any exist
|
||||
if(SETTINGS.wifi.num > 0)
|
||||
{
|
||||
// Single network provisioned - try multiple times
|
||||
if(SETTINGS.wifi.num == 1)
|
||||
{
|
||||
ESP_LOGW(TAG, "Single network provisioned, checking visibility first...");
|
||||
SETTINGS.wifi.selected = 0;
|
||||
|
||||
// Check if the network is visible before attempting connections
|
||||
if(isSSIDVisible(SETTINGS.wifi.entry[0].ssid))
|
||||
{
|
||||
ESP_LOGW(TAG, "Network '%s' is visible, attempting connection...",
|
||||
SETTINGS.wifi.entry[0].ssid);
|
||||
|
||||
for(int n = 0; n < 7; n++)
|
||||
{
|
||||
ESP_LOGW(TAG, "Connection attempt %d/7 to '%s'", n+1,
|
||||
SETTINGS.wifi.entry[0].ssid);
|
||||
if(connectTo(SETTINGS.wifi.selected) == WIFI_STATUS::CONNECTED) {
|
||||
ESP_LOGW(TAG, "Successfully connected on attempt %d", n+1);
|
||||
return WIFI_STATUS::CONNECTED;
|
||||
}
|
||||
::WiFi.disconnect();
|
||||
delay(1000);
|
||||
}
|
||||
ESP_LOGW(TAG, "Failed to connect to visible network after 7 attempts");
|
||||
}
|
||||
else
|
||||
{
|
||||
ESP_LOGW(TAG, "Network '%s' not found in scan - skipping connection attempts",
|
||||
SETTINGS.wifi.entry[0].ssid);
|
||||
}
|
||||
|
||||
ESP_LOGW(TAG, "Single provisioned network unavailable or failed");
|
||||
}
|
||||
else
|
||||
{
|
||||
// Multiple networks provisioned - ALWAYS scan first to get current visibility/RSSI
|
||||
ESP_LOGW(TAG, "Multiple networks provisioned, scanning for currently available networks...");
|
||||
memset(m_ignored, 0, SETTINGS_NUM_WIFI_ENTRIES);
|
||||
|
||||
// Force a fresh scan to get current network conditions
|
||||
ESP_LOGW(TAG, "Performing fresh scan to find best available network...");
|
||||
int ssid_ix = scan();
|
||||
|
||||
if(ssid_ix >= 0)
|
||||
{
|
||||
ESP_LOGW(TAG, "Found available network with best RSSI: '%s'",
|
||||
SETTINGS.wifi.entry[ssid_ix].ssid);
|
||||
if(connectTo(ssid_ix) == WIFI_STATUS::CONNECTED)
|
||||
{
|
||||
SETTINGS.wifi.selected = ssid_ix;
|
||||
ESP_LOGW(TAG, "Connected to best available network");
|
||||
return WIFI_STATUS::CONNECTED;
|
||||
}
|
||||
|
||||
// First choice failed - mark as ignored and try others
|
||||
ESP_LOGW(TAG, "Best RSSI network failed, trying other available networks...");
|
||||
m_ignored[ssid_ix] = IGNORE_SSID_MINS;
|
||||
|
||||
// Keep trying other networks found in the scan
|
||||
do
|
||||
{
|
||||
ssid_ix = scan();
|
||||
if(ssid_ix >= 0)
|
||||
{
|
||||
ESP_LOGW(TAG, "Trying next best available network: '%s'",
|
||||
SETTINGS.wifi.entry[ssid_ix].ssid);
|
||||
if(connectTo(ssid_ix) == WIFI_STATUS::CONNECTED) {
|
||||
SETTINGS.wifi.selected = ssid_ix;
|
||||
ESP_LOGW(TAG, "Connected to network '%s'",
|
||||
SETTINGS.wifi.entry[ssid_ix].ssid);
|
||||
return WIFI_STATUS::CONNECTED;
|
||||
}
|
||||
else {
|
||||
m_ignored[ssid_ix] = IGNORE_SSID_MINS;
|
||||
}
|
||||
}
|
||||
else {
|
||||
ESP_LOGW(TAG, "No more available networks found in scan");
|
||||
break;
|
||||
}
|
||||
} while(true);
|
||||
|
||||
// All scanned networks failed - try a brute force approach on all stored networks
|
||||
ESP_LOGW(TAG, "Scan-based selection failed, trying brute force on all stored networks...");
|
||||
memset(m_ignored, 0, SETTINGS_NUM_WIFI_ENTRIES); // Clear ignore list
|
||||
|
||||
for(int cycle = 0; cycle < 3; cycle++)
|
||||
{
|
||||
ESP_LOGW(TAG, "Brute force cycle %d/3", cycle+1);
|
||||
for(int n = 0; n < SETTINGS.wifi.num; n++)
|
||||
{
|
||||
// Check if network is actually visible before trying to connect
|
||||
ESP_LOGW(TAG, "Checking visibility of stored network '%s'...",
|
||||
SETTINGS.wifi.entry[n].ssid);
|
||||
|
||||
if(isSSIDVisible(SETTINGS.wifi.entry[n].ssid))
|
||||
{
|
||||
ESP_LOGW(TAG, "Network '%s' is visible, attempting connection...",
|
||||
SETTINGS.wifi.entry[n].ssid);
|
||||
if(connectTo(n) == WIFI_STATUS::CONNECTED) {
|
||||
SETTINGS.wifi.selected = n;
|
||||
ESP_LOGW(TAG, "Connected to '%s' in brute force mode",
|
||||
SETTINGS.wifi.entry[n].ssid);
|
||||
return WIFI_STATUS::CONNECTED;
|
||||
}
|
||||
}
|
||||
else
|
||||
{
|
||||
ESP_LOGW(TAG, "Network '%s' not visible, skipping",
|
||||
SETTINGS.wifi.entry[n].ssid);
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
else
|
||||
{
|
||||
// No provisioned networks found in scan - try visibility check on all stored networks
|
||||
ESP_LOGW(TAG, "No provisioned networks found in scan, checking individual visibility...");
|
||||
|
||||
for(int n = 0; n < SETTINGS.wifi.num; n++)
|
||||
{
|
||||
ESP_LOGW(TAG, "Checking if stored network '%s' is available...",
|
||||
SETTINGS.wifi.entry[n].ssid);
|
||||
|
||||
if(isSSIDVisible(SETTINGS.wifi.entry[n].ssid))
|
||||
{
|
||||
ESP_LOGW(TAG, "Found available stored network '%s', attempting connection...",
|
||||
SETTINGS.wifi.entry[n].ssid);
|
||||
if(connectTo(n) == WIFI_STATUS::CONNECTED) {
|
||||
SETTINGS.wifi.selected = n;
|
||||
ESP_LOGW(TAG, "Connected to stored network '%s'",
|
||||
SETTINGS.wifi.entry[n].ssid);
|
||||
return WIFI_STATUS::CONNECTED;
|
||||
}
|
||||
}
|
||||
else
|
||||
{
|
||||
ESP_LOGW(TAG, "Stored network '%s' not currently available",
|
||||
SETTINGS.wifi.entry[n].ssid);
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
ESP_LOGW(TAG, "Failed to connect to any provisioned networks");
|
||||
}
|
||||
}
|
||||
else
|
||||
{
|
||||
ESP_LOGW(TAG, "No networks provisioned");
|
||||
}
|
||||
|
||||
// Fallback: Try fallback WiFi networks
|
||||
ESP_LOGW(TAG, "===== ATTEMPTING FALLBACK CONNECTIONS =====");
|
||||
|
||||
const char* default_ssid = "CBX_IoT";
|
||||
if(isSSIDVisible(default_ssid))
|
||||
WIFI_STATUS fallback_status = connectToDefault();
|
||||
if(fallback_status == WIFI_STATUS::CONNECTED)
|
||||
{
|
||||
ESP_LOGW(TAG, "Successfully connected to fallback network");
|
||||
return WIFI_STATUS::CONNECTED;
|
||||
}
|
||||
|
||||
// Check if we should recalibrate for any visible fallback network
|
||||
ESP_LOGW(TAG, "All fallback connections failed, checking if recalibration needed...");
|
||||
|
||||
// Check if any fallback network is visible
|
||||
bool any_network_visible = false;
|
||||
const char* visible_network = nullptr;
|
||||
|
||||
for(int i = 0; i < NUM_FALLBACK_NETWORKS; i++)
|
||||
{
|
||||
ESP_LOGW(TAG, "Checking visibility of fallback network '%s'...", FALLBACK_NETWORKS[i]);
|
||||
if(isSSIDVisible(FALLBACK_NETWORKS[i]))
|
||||
{
|
||||
any_network_visible = true;
|
||||
visible_network = FALLBACK_NETWORKS[i];
|
||||
ESP_LOGW(TAG, "Fallback network '%s' is VISIBLE", FALLBACK_NETWORKS[i]);
|
||||
break;
|
||||
}
|
||||
else {
|
||||
ESP_LOGW(TAG, "Fallback network '%s' is NOT visible", FALLBACK_NETWORKS[i]);
|
||||
}
|
||||
}
|
||||
|
||||
if(any_network_visible)
|
||||
{
|
||||
unsigned long current_time = millis();
|
||||
|
||||
// Allow recalibration if:
|
||||
// 1. Never recalibrated before (m_last_recalibration_time == 0)
|
||||
// 2. Or enough time has passed since last recalibration
|
||||
// Allow recalibration if never done or cooldown expired
|
||||
bool cooldown_ok = (m_last_recalibration_time == 0) ||
|
||||
(current_time - m_last_recalibration_time >= RECALIBRATION_COOLDOWN_MS);
|
||||
|
||||
if(cooldown_ok)
|
||||
{
|
||||
ESP_LOGW(TAG, "Fallback network '%s' visible but connection failed - performing recalibration", default_ssid);
|
||||
ESP_LOGI(TAG, "Current time: %lu, Last recalibration: %lu", current_time, m_last_recalibration_time);
|
||||
ESP_LOGW(TAG, "*** RECALIBRATION TRIGGERED ***");
|
||||
ESP_LOGW(TAG, "Network '%s' visible but connection failed", visible_network);
|
||||
ESP_LOGW(TAG, "Current time: %lu ms, Last recalibration: %lu ms ago",
|
||||
current_time,
|
||||
m_last_recalibration_time ? (current_time - m_last_recalibration_time) : 0);
|
||||
|
||||
performRadioRecalibration();
|
||||
|
||||
// Retry fallback connection after recalibration
|
||||
ESP_LOGI(TAG, "Retrying fallback connection after recalibration...");
|
||||
// Retry all fallback networks after recalibration
|
||||
ESP_LOGW(TAG, "===== RETRYING AFTER RECALIBRATION =====");
|
||||
fallback_status = connectToDefault();
|
||||
if(fallback_status == WIFI_STATUS::CONNECTED)
|
||||
{
|
||||
ESP_LOGI(TAG, "Successfully connected to fallback after recalibration!");
|
||||
ESP_LOGW(TAG, "*** SUCCESS *** Connected after recalibration!");
|
||||
return WIFI_STATUS::CONNECTED;
|
||||
}
|
||||
else
|
||||
{
|
||||
ESP_LOGW(TAG, "Fallback still failed after recalibration");
|
||||
ESP_LOGE(TAG, "*** FAILURE *** Still cannot connect after recalibration");
|
||||
|
||||
// Try provisioned networks one more time after recalibration
|
||||
if(SETTINGS.wifi.num > 0) {
|
||||
ESP_LOGW(TAG, "Final attempt on provisioned networks after recalibration...");
|
||||
for(int i = 0; i < SETTINGS.wifi.num; i++) {
|
||||
if(connectTo(i) == WIFI_STATUS::CONNECTED) {
|
||||
ESP_LOGW(TAG, "Connected to provisioned network after recalibration!");
|
||||
return WIFI_STATUS::CONNECTED;
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
else
|
||||
{
|
||||
unsigned long time_remaining = RECALIBRATION_COOLDOWN_MS - (current_time - m_last_recalibration_time);
|
||||
ESP_LOGD(TAG, "Recalibration skipped - cooldown period active (%lu ms remaining)", time_remaining);
|
||||
ESP_LOGW(TAG, "Recalibration SKIPPED - cooldown active");
|
||||
ESP_LOGW(TAG, "Time remaining: %lu ms (%lu seconds)",
|
||||
time_remaining, time_remaining / 1000);
|
||||
}
|
||||
}
|
||||
else
|
||||
{
|
||||
ESP_LOGI(TAG, "Fallback network not visible - network may be down");
|
||||
ESP_LOGE(TAG, "No fallback networks visible - all networks may be down");
|
||||
}
|
||||
|
||||
ESP_LOGE(TAG, "Cannot connect to any network including default fallback");
|
||||
ESP_LOGE(TAG, "===== CONNECTION FAILED =====");
|
||||
ESP_LOGE(TAG, "Cannot connect to any network (provisioned or fallback)");
|
||||
//dumpSystemDiagnostics("CONNECTION_FAILED_FINAL");
|
||||
return WIFI_STATUS::NOT_PROVISIONED;
|
||||
}
|
||||
|
||||
@ -488,7 +731,7 @@ int Wifi::scan()
|
||||
{
|
||||
ESP_LOGI(TAG, "Scanning wifi networks...");
|
||||
|
||||
int num_networks = WiFi.scanNetworks(false, false, false, 500);
|
||||
int num_networks = WiFi.scanNetworks(false, false, false, 0);
|
||||
ESP_LOGI(TAG, "found %d networks", num_networks);
|
||||
|
||||
int rssi = -500;
|
||||
|
||||
12
main/Wifi.h
12
main/Wifi.h
@ -45,6 +45,8 @@ public:
|
||||
void stopProvisioning();
|
||||
bool isProvisioningTimedOut();
|
||||
void resetProvisioningTimer();
|
||||
void performBootupCalibration();
|
||||
bool shouldPerformBootupCalibration();
|
||||
|
||||
protected:
|
||||
void wifi_event(arduino_event_id_t event, arduino_event_info_t info);
|
||||
@ -60,10 +62,16 @@ public:
|
||||
WIFI_STATUS waitForConnection();
|
||||
|
||||
private:
|
||||
WIFI_STATUS connectToDefault();
|
||||
// Single source of truth for fallback networks
|
||||
static const char* FALLBACK_NETWORKS[];
|
||||
static const char* FALLBACK_PASSWORDS[];
|
||||
static const int NUM_FALLBACK_NETWORKS;
|
||||
|
||||
WIFI_STATUS connectToDefault();
|
||||
WIFI_STATUS connectToFallbackNetwork(const char* ssid, const char* password);
|
||||
unsigned long m_last_recalibration_time = 0;
|
||||
static const unsigned long RECALIBRATION_COOLDOWN_MS = 3600000; // 1 hour
|
||||
|
||||
bool m_bootup_calibration_done = false;
|
||||
bool shouldRecalibrateRadio(int failed_ssid_index);
|
||||
void performRadioRecalibration();
|
||||
bool isSSIDVisible(const char* ssid);
|
||||
|
||||
Loading…
x
Reference in New Issue
Block a user