Files
WiFiManager/WiFiManager.cpp
T

1616 lines
48 KiB
C++

/**************************************************************
WiFiManager is a library for the ESP8266/Arduino platform
(https://github.com/esp8266/Arduino) to enable easy
configuration and reconfiguration of WiFi credentials using a Captive Portal
inspired by:
http://www.esp8266.com/viewtopic.php?f=29&t=2520
https://github.com/chriscook8/esp-arduino-apboot
https://github.com/esp8266/Arduino/tree/master/libraries/DNSServer/examples/CaptivePortalAdvanced
Built by AlexT https://github.com/tzapu
Licensed under MIT license
**************************************************************/
#include "WiFiManager.h"
#include "strings_en.h"
// PARAMETERS
WiFiManagerParameter::WiFiManagerParameter(const char *custom) {
_id = NULL;
_placeholder = NULL;
_length = 0;
_value = NULL;
_labelPlacement = WFM_LABEL_BEFORE;
_customHTML = custom;
}
WiFiManagerParameter::WiFiManagerParameter(const char *id, const char *placeholder, const char *defaultValue, int length) {
init(id, placeholder, defaultValue, length, "", WFM_LABEL_BEFORE);
}
WiFiManagerParameter::WiFiManagerParameter(const char *id, const char *placeholder, const char *defaultValue, int length, const char *custom) {
init(id, placeholder, defaultValue, length, custom, WFM_LABEL_BEFORE);
}
WiFiManagerParameter::WiFiManagerParameter(const char *id, const char *placeholder, const char *defaultValue, int length, const char *custom, int labelPlacement) {
init(id, placeholder, defaultValue, length, custom, labelPlacement);
}
void WiFiManagerParameter::init(const char *id, const char *placeholder, const char *defaultValue, int length, const char *custom, int labelPlacement) {
_id = id;
_placeholder = placeholder;
_length = length;
_labelPlacement = labelPlacement;
_value = new char[length + 1];
for (int i = 0; i < length; i++) {
_value[i] = 0;
}
if (defaultValue != NULL) {
strncpy(_value, defaultValue, length+1); // length+1 due to null terminated string
}
_customHTML = custom;
}
WiFiManagerParameter::~WiFiManagerParameter() {
if (_value != NULL) {
delete[] _value;
}
}
const char* WiFiManagerParameter::getValue() {
return _value;
}
const char* WiFiManagerParameter::getID() {
return _id;
}
const char* WiFiManagerParameter::getPlaceholder() {
return _placeholder;
}
int WiFiManagerParameter::getValueLength() {
return _length;
}
int WiFiManagerParameter::getLabelPlacement() {
return _labelPlacement;
}
const char* WiFiManagerParameter::getCustomHTML() {
return _customHTML;
}
bool WiFiManager::addParameter(WiFiManagerParameter *p) {
// check param id is valid
for (int i = 0; i < strlen(p->getID()); i++){
if(!isAlphaNumeric(p->getID()[i])){
DEBUG_WM("[ERROR] parameter IDs can only contain alpha numeric chars");
return false;
}
}
if(_paramsCount == _max_params){
// resize the params array by increment of WIFI_MANAGER_MAX_PARAMS
_max_params += WIFI_MANAGER_MAX_PARAMS;
DEBUG_WM(F("Updated _max_params:"),_max_params);
WiFiManagerParameter** new_params = (WiFiManagerParameter**)realloc(_params, _max_params * sizeof(WiFiManagerParameter*));
DEBUG_WM(WIFI_MANAGER_MAX_PARAMS);
DEBUG_WM(_paramsCount);
DEBUG_WM(_max_params);
if (new_params != NULL) {
_params = new_params;
} else {
DEBUG_WM("[ERROR] failed to realloc params, size not increased!");
return false;
}
}
_params[_paramsCount] = p;
_paramsCount++;
DEBUG_WM("Added Parameter:",p->getID());
return true;
}
// constructors
WiFiManager::WiFiManager(Stream& consolePort):_debugPort(consolePort) {
WiFiManager();
}
WiFiManager::WiFiManager():_debugPort(Serial) {
if(_debug) debugPlatformInfo();
_usermode = WiFi.getMode();
WiFi.persistent(false); // disable persistent so scannetworks and mode switching do not cause overwrites
//parameters
_max_params = WIFI_MANAGER_MAX_PARAMS;
_params = (WiFiManagerParameter**)malloc(_max_params * sizeof(WiFiManagerParameter*));
}
// destructor
WiFiManager::~WiFiManager() {
if(_userpersistent) WiFi.persistent(true); // reenable persistent, there is no getter we rely on _userpersistent
if(_usermode != WIFI_OFF) WiFi.mode(_usermode);
// parameters
if (_params != NULL){
DEBUG_WM(F("freeing allocated params!"));
free(_params);
}
DEBUG_WM(F("unloading"));
}
// AUTOCONNECT
boolean WiFiManager::autoConnect() {
String ssid = _wifissidprefix + "_" + String(WIFI_getChipId());
return autoConnect(ssid.c_str(), NULL);
}
boolean WiFiManager::autoConnect(char const *apName, char const *apPassword) {
DEBUG_WM(F("AutoConnect"));
// attempt to connect using saved settings, on fail fallback to AP config portal
WiFi_enableSTA(true);
_usermode = WIFI_STA;
WiFi_autoReconnect();
// if already connected, or try stored connect
if (WiFi.status() == WL_CONNECTED || connectWifi("", "") == WL_CONNECTED) {
//connected
DEBUG_WM(F("IP Address:"),WiFi.localIP());
return true;
}
// not connected start configportal
return startConfigPortal(apName, apPassword);
}
// CONFIG PORTAL
bool WiFiManager::startAP(){
DEBUG_WM(F("StartAP with SSID of"),_apName);
// setup optional soft AP static ip config
if (_ap_static_ip) {
DEBUG_WM(F("Custom AP IP/GW/Subnet:"));
WiFi.softAPConfig(_ap_static_ip, _ap_static_gw, _ap_static_sn);
}
bool ret = true;
// start soft AP with password or anonymous
if (_apPassword != "") {
ret = WiFi.softAP(_apName.c_str(), _apPassword.c_str());//password option
} else {
DEBUG_WM(F("AP has anonymous access"));
ret = WiFi.softAP(_apName.c_str());
}
debugSoftAPConfig();
if(!ret) DEBUG_WM("[ERROR] There was a problem starting the AP"); // @bug startAP returns unreliable success status
delay(500); // slight delay to make sure we get an AP IP
DEBUG_WM(F("AP IP address:"),WiFi.softAPIP());
// do AP callback if set
if ( _apcallback != NULL) {
_apcallback(this);
}
return ret;
}
void WiFiManager::startWebPortal() {
if(configPortalActive || webPortalActive) return;
setupConfigPortal();
webPortalActive = true;
}
void WiFiManager::stopWebPortal() {
if(!configPortalActive && !webPortalActive) return;
DEBUG_WM(F("Stopping Web Portal"));
webPortalActive = false;
stopConfigPortal();
}
boolean WiFiManager::configPortalHasTimeout(){
if(_configPortalTimeout == 0 || WiFi_softap_num_stations() > 0){
if(millis() - timer > 30000){
timer = millis();
DEBUG_WM("NUM CLIENTS: " + (String)WiFi_softap_num_stations());
}
_configPortalStart = millis(); // kludge, bump configportal start time to skew timeouts
return false;
}
// handle timeout
if(millis() > _configPortalStart + _configPortalTimeout){
DEBUG_WM(F("config portal has timed out"));
return true;
} else {
// log timeout
if(_debug){
uint16_t logintvl = 10000; // how often to emit timeing out counter logging
if((millis() - timer) > logintvl){
timer = millis();
DEBUG_WM("Portal Timeout In " + (String)((_configPortalStart + _configPortalTimeout-millis())/1000) + " seconds");
}
}
}
return false;
}
void WiFiManager::setupConfigPortal() {
DEBUG_WM("Starting Web Portal");
// setup dns and web servers
dnsServer.reset(new DNSServer());
#if defined(ESP32) && defined(WEBSERVERSHIM)
server.reset(new WebServer(80));
#else
server.reset(new ESP8266WebServer(80));
#endif
/* Setup the DNS server redirecting all the domains to the apIP */
dnsServer->setErrorReplyCode(DNSReplyCode::NoError);
dnsServer->start(DNS_PORT, "*", WiFi.softAPIP());
/* Setup httpd callbacks, web pages: root, wifi config pages, SO captive portal detectors and not found. */
server->on("/", std::bind(&WiFiManager::handleRoot, this));
server->on("/wifi", std::bind(&WiFiManager::handleWifi, this, true));
server->on("/0wifi", std::bind(&WiFiManager::handleWifi, this, false));
server->on("/wifisave", std::bind(&WiFiManager::handleWifiSave, this));
server->on("/i", std::bind(&WiFiManager::handleInfo, this));
server->on("/r", std::bind(&WiFiManager::handleReset, this));
server->on("/exit", std::bind(&WiFiManager::handleExit, this));
server->on("/erase", std::bind(&WiFiManager::handleErase, this));
//server->on("/fwlink", std::bind(&WiFiManager::handleRoot, this)); //Microsoft captive portal. Maybe not needed. Might be handled by notFound handler.
server->onNotFound (std::bind(&WiFiManager::handleNotFound, this));
server->begin(); // Web server start
DEBUG_WM(F("HTTP server started"));
}
boolean WiFiManager::startConfigPortal() {
String ssid = _wifissidprefix + "_" + String(WIFI_getChipId());
return startConfigPortal(ssid.c_str(), NULL);
}
boolean WiFiManager::startConfigPortal(char const *apName, char const *apPassword) {
//setup AP
bool disableSTA = false; // debug, always disable sta
// HANDLE issues with STA connections, shutdown sta if not connected, or else this will hang channel scanning and softap will not respond
// @todo sometimes still cannot connect to AP for no known reason, no events in log either
if(!WiFi.isConnected() || disableSTA){
// this fixes most ap problems, however, simply doing mode(WIFI_AP) does not work if sta connection is hanging, must `wifi_station_disconnect`
WiFi_Disconnect();
WiFi_enableSTA(false);
DEBUG_WM("Disabling STA");
}
else {
// @todo even if sta is connected, it is possible that softap connections will fail, IOS says "invalid password", windows says "cannot connect to this network" researching
WiFi_enableSTA(true);
}
DEBUG_WM("Enabling AP");
_apName = apName; // @todo check valid apname ?
_apPassword = apPassword;
if(!validApPassword()) return false;
// init configportal globals to known states
configPortalActive = true;
bool result = connect = abort = false; // loop flags, connect true success, abort true break
uint8_t state;
DEBUG_WM(F("setupConfigPortal"));
_configPortalStart = millis();
// start access point
startAP();
// init configportal
setupConfigPortal();
if(!_configPortalIsBlocking){
DEBUG_WM(F("Config Portal Running, non blocking/processing"));
return result;
}
DEBUG_WM(F("Config Portal Running, blocking, waiting for clients..."));
// blocking loop waiting for config
while(1){
// if timed out or abort, break
if(configPortalHasTimeout() || abort){
DEBUG_WM(F("configportal abort"));
stopConfigPortal();
result = abort ? portalAbortResult : portalTimeoutResult; // false, false
break;
}
state = handleConfigPortal();
// status change, break
if(state != WL_IDLE_STATUS){
result = state == WL_CONNECTED; // true if connected
break;
}
yield(); // watchdog
}
DEBUG_WM("config portal exiting");
return result;
}
boolean WiFiManager::process(){
if(webPortalActive || (configPortalActive && !_configPortalIsBlocking)){
uint8_t state = handleConfigPortal();
return state == WL_CONNECTED;
}
return false;
}
//using esp enums returns for now, should be fine
uint8_t WiFiManager::handleConfigPortal(){
//DNS handler
dnsServer->processNextRequest();
//HTTP handler
server->handleClient();
// Waiting for save...
if(connect) {
connect = false;
DEBUG_WM(F("Connecting to a new AP"));
if(_enableCaptivePortal) delay(2000); // configportal close delay
// attempt sta connection to submitted _ssid, _pass
if (connectWifi(_ssid, _pass) == WL_CONNECTED) {
DEBUG_WM(F("Connect to new AP [SUCCESS]"));
DEBUG_WM(F("Got IP Address:"));
DEBUG_WM(WiFi.localIP());
stopConfigPortal();
return WL_CONNECTED; // success
}
DEBUG_WM(F("Connect to new AP [FAILED]"));
if (_shouldBreakAfterConfig) {
// this is more of an exiting callback than a save
stopConfigPortal();
return WL_CONNECT_FAILED; // fail
}
else{
// sta off to stabilize AP on connect failure
WiFi_Disconnect();
WiFi_enableSTA(false);
DEBUG_WM("Disabling STA");
}
}
return WL_IDLE_STATUS;
}
boolean WiFiManager::stopConfigPortal(){
if(webPortalActive) return false;
// do save callback, @todo move out of here
if ( _savecallback != NULL) {
//todo: confirm or verify data was saved
_savecallback();
}
//DNS handler
dnsServer->processNextRequest();
//HTTP handler
server->handleClient();
// @todo what is the proper way to shutdown and free the server up
server->stop();
server.reset();
dnsServer.reset();
if(!configPortalActive) return false;
// turn off AP
// @todo bug *WM: disconnect configportal
// [APdisconnect] set_config failed!
// *WM: disconnect configportal - softAPdisconnect failed
DEBUG_WM(F("disconnect configportal"));
bool ret = WiFi.softAPdisconnect(false);
if(!ret)DEBUG_WM(F("disconnect configportal - softAPdisconnect failed"));
WiFi_Mode(_usermode); // restore users wifi mode
configPortalActive = false;
return ret;
}
// @todo refactor this up into seperate functions
// one for connecting to flash , one for new client
// clean up, flow is convoluted, and causes bugs
int WiFiManager::connectWifi(String ssid, String pass) {
DEBUG_WM(F("Connecting as wifi client..."));
bool waitforconx = true;
// Setup static IP config if provided
if (_sta_static_ip) {
WiFi.config(_sta_static_ip, _sta_static_gw, _sta_static_sn);
DEBUG_WM(F("Custom STA IP/GW/Subnet:"),WiFi.localIP());
}
// make sure sta is on before `begin` so it does not call enablesta->mode while persistent is ON ( which would save WM AP state to eeprom !)
WiFi_Disconnect(); // disconnect before begin, in case anything is hung
// if ssid argument provided connect to that
if (ssid != "") {
DEBUG_WM("Connecting to new AP");
WiFi_enableSTA(true,storeSTAmode); // storeSTAmode will also toggle STA on in default opmode (persistent) if true (default)
WiFi.persistent(true);
WiFi.begin(ssid.c_str(), pass.c_str());
WiFi.persistent(false);
//@todo catch failures in set_config
} else {
// connect using saved ssid if there is one
if (WiFi_hasAutoConnect()) {
DEBUG_WM("Connecting to saved AP");
WiFi_enableSTA(true,storeSTAmode);
WiFi.begin();
} else {
DEBUG_WM("No saved credentials, skipping wifi");
waitforconx = false;
}
}
uint8_t connRes = waitforconx ? waitForConnectResult() : WL_NO_SSID_AVAIL;
DEBUG_WM ("Connection result:",getWLStatusString(connRes));
// do WPS, if WPS options enabled and not connected and no password was supplied
// @todo this seems like wrong place for this, is it a fallback or option?
if (_tryWPS && connRes != WL_CONNECTED && pass == "") {
startWPS();
// should be connected at the end of WPS
connRes = waitForConnectResult();
}
return connRes;
}
// @todo uses _connectTimeout for wifi save also, add timeout argument to bypass?
uint8_t WiFiManager::waitForConnectResult(uint16_t timeout) {
return waitForConnectResult(timeout * 1000);
}
uint8_t WiFiManager::waitForConnectResult() {
if (_connectTimeout == 0){
DEBUG_WM (F("connectTimeout not set, ESP waitForConnectResult..."));
return WiFi.waitForConnectResult();
}
DEBUG_WM (F("connectTimeout set, waiting for connect...."));
uint8_t status;
int timeout = millis() + _connectTimeout;
while(millis() < timeout) {
status = WiFi.status();
// @todo detect additional states, connect happens, then dhcp then get ip, there is some delay here, make sure not to timeout if waiting on IP
if (status == WL_CONNECTED || status == WL_CONNECT_FAILED) {
return status;
}
DEBUG_WM (".");
delay(100);
}
return status;
}
void WiFiManager::startWPS() {
DEBUG_WM("START WPS");
#ifdef ESP8266
WiFi.beginWPSConfig();
#else
// @todo
#endif
DEBUG_WM("END WPS");
}
// GETTERS
String WiFiManager::getConfigPortalSSID() {
return _apName;
}
// SETTERS
void WiFiManager::resetSettings() {
DEBUG_WM(F("SETTINGS ERASED"));
WiFi_enableSTA(true,true);
WiFi.disconnect(true);
}
void WiFiManager::setTimeout(unsigned long seconds) {
setConfigPortalTimeout(seconds);
}
void WiFiManager::setConfigPortalTimeout(unsigned long seconds) {
_configPortalTimeout = seconds * 1000;
}
void WiFiManager::setConnectTimeout(unsigned long seconds) {
_connectTimeout = seconds * 1000;
}
void WiFiManager::setDebugOutput(boolean debug) {
_debug = debug;
}
void WiFiManager::setAPStaticIPConfig(IPAddress ip, IPAddress gw, IPAddress sn) {
_ap_static_ip = ip;
_ap_static_gw = gw;
_ap_static_sn = sn;
}
void WiFiManager::setSTAStaticIPConfig(IPAddress ip, IPAddress gw, IPAddress sn) {
_sta_static_ip = ip;
_sta_static_gw = gw;
_sta_static_sn = sn;
}
void WiFiManager::setMinimumSignalQuality(int quality) {
_minimumQuality = quality;
}
void WiFiManager::setBreakAfterConfig(boolean shouldBreak) {
_shouldBreakAfterConfig = shouldBreak;
}
String WiFiManager::getHTTPHead(String title){
String page;
page += FPSTR(HTTP_HEAD);
page.replace("{v}", title);
page += FPSTR(HTTP_SCRIPT);
page += FPSTR(HTTP_STYLE);
page += _customHeadElement;
page += FPSTR(HTTP_HEAD_END);
return page;
}
/**
* HTTPD CALLBACK root or redirect to captive portal
*/
void WiFiManager::handleRoot() {
DEBUG_WM(F("<- HTTP Root"));
if (captivePortal()) return; // If captive portal redirect instead of displaying the page
String page = getHTTPHead("options"); // @token options
String str = FPSTR(HTTP_ROOT_MAIN);
str.replace("{v}",configPortalActive ? _apName : WiFi.localIP().toString()); // use ip if ap is not active for heading
page += str;
page += FPSTR(HTTP_PORTAL_OPTIONS);
reportStatus(page);
page += FPSTR(HTTP_END);
server->sendHeader("Content-Length", String(page.length()));
server->send(200, "text/html", page);
// server->close(); // testing reliability fix for content length mismatches during mutiple flood hits
}
/**
* HTTPD CALLBACK Wifi config page handler
*/
void WiFiManager::handleWifi(boolean scan) {
DEBUG_WM("<- HTTP Wifi");
String page = getHTTPHead("Config ESP"); // @token titlewifi
if (scan) {
page += getScanItemOut();
}
String pitem = FPSTR(HTTP_FORM_START);
pitem.replace("{v}", WiFi_SSID());
page += pitem;
page += getStaticOut();
page += getParamOut();
page += FPSTR(HTTP_FORM_END);
page += FPSTR(HTTP_SCAN_LINK);
reportStatus(page);
page += FPSTR(HTTP_END);
server->sendHeader("Content-Length", String(page.length()));
server->send(200, "text/html", page);
// server->close(); // testing reliability fix for content length mismatches during mutiple flood hits
// Serial.println(page);
DEBUG_WM(F("Sent config page"));
}
String WiFiManager::getScanItemOut(){
String page;
int n = WiFi.scanNetworks();
DEBUG_WM(F("Scan done"));
if (n == 0) {
DEBUG_WM(F("No networks found"));
page += F("No networks found. Refresh to scan again."); // @token scannotfound
} else {
//sort networks
int indices[n];
for (int i = 0; i < n; i++) {
indices[i] = i;
}
// RSSI SORT
// old sort
for (int i = 0; i < n; i++) {
for (int j = i + 1; j < n; j++) {
if (WiFi.RSSI(indices[j]) > WiFi.RSSI(indices[i])) {
std::swap(indices[i], indices[j]);
}
}
}
/*std::sort(indices, indices + n, [](const int & a, const int & b) -> bool
{
return WiFi.RSSI(a) > WiFi.RSSI(b);
});*/
// remove duplicates ( must be RSSI sorted )
if (_removeDuplicateAPs) {
String cssid;
for (int i = 0; i < n; i++) {
if (indices[i] == -1) continue;
cssid = WiFi.SSID(indices[i]);
for (int j = i + 1; j < n; j++) {
if (cssid == WiFi.SSID(indices[j])) {
DEBUG_WM("DUP AP:",WiFi.SSID(indices[j]));
indices[j] = -1; // set dup aps to index -1
}
}
}
}
// token precheck, to speed up replacements on large ap lists
String HTTP_ITEM_STR = FPSTR(HTTP_ITEM);
bool tok_r = HTTP_ITEM_STR.indexOf("{r}") > 0;
bool tok_R = HTTP_ITEM_STR.indexOf("{R}") > 0;
bool tok_e = HTTP_ITEM_STR.indexOf("{e}") > 0;
bool tok_q = HTTP_ITEM_STR.indexOf("{q}") > 0;
bool tok_i = HTTP_ITEM_STR.indexOf("{i}") > 0;
//display networks in page
for (int i = 0; i < n; i++) {
if (indices[i] == -1) continue; // skip dups
DEBUG_WM("AP: " + (String)WiFi.RSSI(indices[i]) + " " + (String)WiFi.SSID(indices[i]));
int rssiperc = getRSSIasQuality(WiFi.RSSI(indices[i]));
uint8_t enc_type = WiFi.encryptionType(indices[i]);
if (_minimumQuality == -1 || _minimumQuality < rssiperc) {
String item = FPSTR(HTTP_ITEM);
item.replace("{v}", WiFi.SSID(indices[i])); // ssid no encoding
if(tok_e) item.replace("{e}", encryptionTypeStr(enc_type));
if(tok_r) item.replace("{r}", (String)rssiperc); // rssi percentage 0-100
if(tok_R) item.replace("{R}", (String)WiFi.RSSI(indices[i])); // rssi db
if(tok_q) item.replace("{q}", (String)round(map(rssiperc,0,100,1,4))); //quality icon 1-4
if(tok_i){
if (enc_type != WIFI_AUTH_OPEN) {
item.replace("{i}", "l");
} else {
item.replace("{i}", "");
}
}
//DEBUG_WM(item);
page += item;
delay(0);
} else {
DEBUG_WM(F("Skipping , does not meet _minimumQuality"));
}
}
page += "<br/>";
}
return page;
}
String WiFiManager::getStaticOut(){
String page;
if (_sta_show_static_fields || _sta_static_ip) {
// @todo how can we get these settings from memory , wifi_get_ip_info does not seem to reveal if struct ip_info is static or not
// @todo move titles to params for i18n
String item = FPSTR(HTTP_FORM_LABEL);
item += FPSTR(HTTP_FORM_PARAM);
item.replace("{i}", "ip");
item.replace("{n}", "ip");
item.replace("{p}", "{t}");
item.replace("{t}", "Static IP"); // @token staticip
item.replace("{l}", "15");
item.replace("{v}", (_sta_static_ip ? _sta_static_ip.toString() : ""));
item.replace("{c}", "");
// actuals as placeholder
// IPAddress sta_ip = WiFi.localIP();
// item.replace("{p}", sta_ip.toString());
page += item;
item = FPSTR(HTTP_FORM_LABEL);
item += FPSTR(HTTP_FORM_PARAM);
item.replace("{i}", "gw");
item.replace("{n}", "gw");
item.replace("{p}", "{t}");
item.replace("{t}", "Static Gateway"); // @token staticgateway
item.replace("{l}", "15");
item.replace("{v}", (_sta_static_gw ? _sta_static_gw.toString() : ""));
item.replace("{c}", "");
// actuals as placeholder
// IPAddress sta_gateway = WiFi.gatewayIP();
// item.replace("{p}", sta_gateway.toString());
page += item;
item = FPSTR(HTTP_FORM_LABEL);
item += FPSTR(HTTP_FORM_PARAM);
item.replace("{i}", "sn");
item.replace("{n}", "sn");
item.replace("{p}", "{t}");
item.replace("{t}", "Subnet"); // @token subnet
item.replace("{l}", "15");
item.replace("{v}", (_sta_static_sn ? _sta_static_sn.toString() : ""));
item.replace("{c}", "");
// actuals as placeholder
// IPAddress sta_subnet = WiFi.subnetMask();
// item.replace("{p}", sta_subnet.toString());
page += item;
page += "<br/>"; // @todo remove these, use css
}
return page;
}
String WiFiManager::getParamOut(){
String page;
if(_paramsCount > 0){
String HTTP_PARAM_temp = FPSTR(HTTP_FORM_LABEL);
HTTP_PARAM_temp += FPSTR(HTTP_FORM_PARAM);
bool tok_I = HTTP_PARAM_temp.indexOf("{I}") > 0;
bool tok_i = HTTP_PARAM_temp.indexOf("{i}") > 0;
bool tok_n = HTTP_PARAM_temp.indexOf("{n}") > 0;
bool tok_p = HTTP_PARAM_temp.indexOf("{p}") > 0;
bool tok_t = HTTP_PARAM_temp.indexOf("{t}") > 0;
bool tok_l = HTTP_PARAM_temp.indexOf("{l}") > 0;
bool tok_v = HTTP_PARAM_temp.indexOf("{v}") > 0;
bool tok_c = HTTP_PARAM_temp.indexOf("{c}") > 0;
page += FPSTR(HTTP_FORM_PARAM_START);
char parLength[5];
// add the extra parameters to the form
for (int i = 0; i < _paramsCount; i++) {
if (_params[i] == NULL) {
break;
}
// label before or after, this could probably be done via floats however
String pitem;
switch (_params[i]->getLabelPlacement()) {
case WFM_LABEL_BEFORE:
pitem = FPSTR(HTTP_FORM_LABEL);
pitem += FPSTR(HTTP_FORM_PARAM);
break;
case WFM_LABEL_AFTER:
pitem = FPSTR(HTTP_FORM_PARAM);
pitem += FPSTR(HTTP_FORM_LABEL);
break;
default:
// WFM_NO_LABEL
pitem = FPSTR(HTTP_FORM_PARAM);
break;
}
// if no ID use customhtml for item, else generate from param string
if (_params[i]->getID() != NULL) {
if(tok_I)pitem.replace("{I}", "param_"+(String)i);
if(tok_i)pitem.replace("{i}", _params[i]->getID());
if(tok_n)pitem.replace("{n}", _params[i]->getID());
if(tok_p)pitem.replace("{p}", "{t}");
if(tok_t)pitem.replace("{t}", _params[i]->getPlaceholder());
snprintf(parLength, 5, "%d", _params[i]->getValueLength());
if(tok_l)pitem.replace("{l}", parLength);
if(tok_v)pitem.replace("{v}", _params[i]->getValue());
if(tok_c)pitem.replace("{c}", _params[i]->getCustomHTML()); // meant for additional attributes, not html
} else {
pitem = _params[i]->getCustomHTML();
}
page += pitem;
}
if (_params[0] != NULL) {
page += FPSTR(HTTP_FORM_PARAM_END);
}
}
return page;
}
/**
* HTTPD CALLBACK save form and redirect to WLAN config page again
*/
void WiFiManager::handleWifiSave() {
DEBUG_WM(F("<- HTTP WiFi save "));
DEBUG_WM(F("Method:"),server->method() == HTTP_GET ? "GET" : "POST");
//SAVE/connect here
_ssid = server->arg("s").c_str();
_pass = server->arg("p").c_str();
//parameters
if(_paramsCount > 0){
DEBUG_WM("Parameters");
DEBUG_WM("-----------");
for (int i = 0; i < _paramsCount; i++) {
if (_params[i] == NULL) {
break;
}
//read parameter from server
String value;
if(server->arg("param_"+(String)i) != NULL) value = server->arg("param_"+(String)i).c_str();
else value = server->arg(_params[i]->getID()).c_str();
//store it in array
value.toCharArray(_params[i]->_value, _params[i]->_length+1); // length+1 null terminated
DEBUG_WM((String)_params[i]->getID() + ":",value);
}
DEBUG_WM("-----------");
}
if (server->arg("ip") != "") {
//_sta_static_ip.fromString(server->arg("ip"));
String ip = server->arg("ip");
optionalIPFromString(&_sta_static_ip, ip.c_str());
DEBUG_WM(F("static ip:"),ip);
}
if (server->arg("gw") != "") {
String gw = server->arg("gw");
optionalIPFromString(&_sta_static_gw, gw.c_str());
DEBUG_WM(F("static gateway:"),gw);
}
if (server->arg("sn") != "") {
String sn = server->arg("sn");
optionalIPFromString(&_sta_static_sn, sn.c_str());
DEBUG_WM(F("static netmask:"),sn);
}
String page = getHTTPHead("Credentials Saved"); // @token titlewifisaved
page += FPSTR(HTTP_SAVED);
page += FPSTR(HTTP_END);
server->sendHeader("Content-Length", String(page.length()));
server->send(200, "text/html", page);
DEBUG_WM(F("Sent wifi save page"));
connect = true; //signal ready to connect/reset
}
/**
* HTTPD CALLBACK info page
*/
void WiFiManager::handleInfo() {
DEBUG_WM(F("<- HTTP Info"));
String page = getHTTPHead("Info"); // @token titleinfo
reportStatus(page);
// @todo add versioning here
#ifdef ESP8266
page += F("<h3>esp8266</h3><hr><dl>");
// subject to rollover!
page += F("<dt>Uptime</dt><dd>"); // @token uptime
page += (String)(millis() / 1000 / 60) + " mins ";
page += (String)((millis() / 1000) % 60) + " secs";
page += F("<dt>Chip ID</dt><dd>"); // @token chipid
page += WIFI_getChipId();
page += F("</dd>");
page += F("<dt>Flash Chip ID</dt><dd>"); // @token flashid
page += ESP.getFlashChipId();
page += F("</dd>");
page += F("<dt>IDE Flash Size</dt><dd>"); // @token flashsize
page += ESP.getFlashChipSize();
page += F(" bytes</dd>");
page += F("<dt>Actual Flash Size</dt><dd>"); // @token actualflashsize
page += ESP.getFlashChipRealSize();
page += F(" bytes</dd>");
page += F("<dt>SDK Version</dt><dd>"); // @token sdkver
page += system_get_sdk_version();
page += F("</dd>");
page += F("<dt>Core Version</dt><dd>"); // @token corever
page += ESP.getCoreVersion();
page += F("</dd>");
page += F("<dt>Boot Version</dt><dd>"); // @token boot ver
page += system_get_boot_version();
page += F("</dd>");
page += F("<dt>CPU Frequency</dt><dd>"); // @token cpufreq
page += ESP.getCpuFreqMHz();
page += F("MHz</dd>");
// heap is dynamic, would have to have a known starting for graph
// uint32_t heapstart = 47000;
// page += F("<dt>Memory Heap</dt><dd>");
// page += F("Used/Total bytes<br/>");
// page += (heapstart)-ESP.getFreeHeap();
// page += "/";
// page += (heapstart);
// page += "<br/><progress value='" + (String)((heapstart)-ESP.getFreeHeap()) + "' max='" + (String)(heapstart) + "'></progress>";
// page += F("</dd>");
page += F("<dt>Memory - Free Heap</dt><dd>"); // @token freeheap
page += ESP.getFreeHeap();
page += F(" bytes available</dd>"); // @token bytesavail
page += F("<dt>Memory - Sketch Size</dt><dd>"); // @token sketchsize
page += F("Used/Total bytes<br/>"); // @token usedtotal
page += (ESP.getSketchSize()+ESP.getFreeSketchSpace())-ESP.getFreeSketchSpace();
page += "/";
page += (ESP.getSketchSize()+ESP.getFreeSketchSpace());
page += F("<br/><progress value='");
page += (String)((ESP.getSketchSize()+ESP.getFreeSketchSpace())-ESP.getFreeSketchSpace());
page += F("' max='");
page += (String)(ESP.getSketchSize()+ESP.getFreeSketchSpace());
page += F("'></progress></dd>");
page += F("<dt>Last reset reason</dt><dd>"); // @token resetreason
page += ESP.getResetReason();
page += F("</dd>");
page += F("<br/><h3>WiFi</h3><hr><dt>Access Point IP</dt><dd>"); // @token apip
page += WiFi.softAPIP().toString();
page += F("</dd>");
page += F("<dt>Access Point MAC</dt><dd>"); // @token apmac
page += WiFi.softAPmacAddress();
page += F("</dd>");
page += F("<dt>SSID</dt><dd>");
page += WiFi_SSID();
page += F("</dd>");
page += F("<dt>BSSID</dt><dd>");
page += WiFi.BSSIDstr();
page += F("</dd>");
page += F("<dt>Station IP</dt><dd>"); // @token staip
page += WiFi.localIP().toString();
page += F("</dd>");
page += F("<dt>Station Gateway</dt><dd>"); // @token stagw
page += WiFi.gatewayIP().toString();
page += F("</dd>");
page += F("<dt>Station Subnet</dt><dd>"); // @token stasub
page += WiFi.subnetMask().toString();
page += F("</dd>");
page += F("<dt>DNS Server</dt><dd>"); // @token dnss
page += WiFi.dnsIP().toString();
page += F("</dd>");
page += F("<dt>Hostname</dt><dd>"); // @token hostname
page += WiFi.hostname();
page += F("</dd>");
page += F("<dt>Station MAC</dt><dd>"); // @stamac
page += WiFi.macAddress();
page += F("</dd>");
page += F("<dt>Connected</dt><dd>"); // @token connected
page += WiFi.isConnected() ? "Yes" : "No"; //@token Y,N
page += F("</dd>");
page += F("<dt>Autoconnect</dt><dd>");
page += WiFi.getAutoConnect() ? "Enabled" : "Disabled"; // @token enabled,disabled
page += F("</dd>");
page += F("</dl>");
page += FPSTR(HTTP_ERASEBTN);
page += FPSTR(HTTP_HELP);
#endif
#ifdef ESP32
page += F("<h3>esp32</h3><hr><dl>");
// subject to rollover!
page += F("<dt>Uptime</dt><dd>");
page += (String)(millis() / 1000 / 60) + " mins ";
page += (String)((millis() / 1000) % 60) + " secs";
page += F("<dt>Chip ID</dt><dd>");
page += WIFI_getChipId();
page += F("</dd>");
page += F("<dt>Chip Rev</dt><dd>");
page += ESP.getChipRevision();
page += F("</dd>");
page += F("<dt>Flash Size</dt><dd>");
page += ESP.getFlashChipSize();
page += F(" bytes</dd>");
page += F("<dt>SDK Version</dt><dd>");
page += esp_get_idf_version();
page += F("</dd>");
// page += F("<dt>Core Version</dt><dd>");
// page += ESP.getCoreVersion();
// page += F("</dd>");
page += F("<dt>CPU Frequency</dt><dd>");
page += ESP.getCpuFreqMHz();
page += F("MHz</dd>");
page += F("<dt>Memory - Free Heap</dt><dd>");
page += ESP.getFreeHeap();
page += F(" bytes available</dd>");
page += F("<br/><h3>WiFi</h3><hr><dt>Access Point IP</dt><dd>");
page += WiFi.softAPIP().toString();
page += F("</dd>");
page += F("<dt>Access Point MAC</dt><dd>");
page += WiFi.softAPmacAddress();
page += F("</dd>");
page += F("<dt>SSID</dt><dd>");
page += WiFi_SSID();
page += F("</dd>");
page += F("<dt>BSSID</dt><dd>");
page += WiFi.BSSIDstr();
page += F("</dd>");
page += F("<dt>Station IP</dt><dd>");
page += WiFi.localIP().toString();
page += F("</dd>");
page += F("<dt>Station Gateway</dt><dd>");
page += WiFi.gatewayIP().toString();
page += F("</dd>");
page += F("<dt>Station Subnet</dt><dd>");
page += WiFi.subnetMask().toString();
page += F("</dd>");
page += F("<dt>DNS Server</dt><dd>");
page += WiFi.dnsIP().toString();
page += F("</dd>");
page += F("<dt>Hostname</dt><dd>");
page += WiFi.getHostname();
page += F("</dd>");
page += F("<dt>Station MAC</dt><dd>");
page += WiFi.macAddress();
page += F("</dd>");
page += F("<dt>Connected</dt><dd>");
page += WiFi.isConnected() ? "Yes" : "No";
page += F("</dd>");
page += F("<dt>Autoconnect</dt><dd>");
page += WiFi.getAutoConnect() ? "Enabled" : "Disabled";
page += F("</dd>");
page += F("</dl>");
#endif
page += "<br/><form action='/erase' method='get'><button>Erase WiFi Config</button></form>";
page += F("<br/><h3>Available Pages</h3><hr>");
page += F("<table class='table'>");
page += F("<thead><tr><th>Page</th><th>Function</th></tr></thead><tbody>");
page += F("<tr><td><a href='/'>/</a></td>");
page += F("<td>Menu page.</td></tr>");
page += F("<tr><td><a href='/wifi'>/wifi</a></td>");
page += F("<td>Show WiFi scan results and enter WiFi configuration.</td></tr>");
page += F("<tr><td><a href='/wifisave'>/wifisave</a></td>");
page += F("<td>Save WiFi configuration information and configure device. Needs variables supplied.</td></tr>");
page += F("<tr><td><a href='/close'>/close</a></td>");
page += F("<td>Close the configuration server and configuration WiFi network.</td></tr>");
page += F("<tr><td><a href='/i'>/i</a></td>");
page += F("<td>Information page</td></tr>");
page += F("<tr><td><a href='/exit'>/exit</a></td>");
page += F("<td>Exit Config Portal, configportal will close</td></tr>");
page += F("<tr><td><a href='/r'>/r</a></td>");
page += F("<td>Reboot the device</td></tr>");
page += F("<tr><td><a href='/erase'>/erase</a></td>");
page += F("<td>Erase WiFi configuration and reboot Device. Device will not reconnect to a network until new WiFi configuration data is entered.</td></tr>");
// @todo add callback here
page += F("</table>");
page += F("<p/>More information about WiFiManager at <a href=\"https://github.com/tzapu/WiFiManager\">https://github.com/tzapu/WiFiManager</a>.");
page += FPSTR(HTTP_END);
server->sendHeader("Content-Length", String(page.length()));
server->send(200, "text/html", page);
DEBUG_WM(F("Sent info page"));
}
/**
* HTTPD CALLBACK root or redirect to captive portal
*/
void WiFiManager::handleExit() {
DEBUG_WM(F("<- HTTP Exit"));
String page = getHTTPHead("Exit"); // @token titleexit
page += "Exiting"; // @token exiting
server->sendHeader("Content-Length", String(page.length()));
server->send(200, "text/html", page);
abort = true;
}
void WiFiManager::reportStatus(String &page){
String str;
if (WiFi_SSID() != ""){
if (WiFi.status()==WL_CONNECTED){
str = FPSTR(HTTP_STATUS_ON);
str.replace("{u}",WiFi.localIP().toString());
str.replace("{s}",WiFi.SSID());
}
else {
str = FPSTR(HTTP_STATUS_OFF);
str.replace("{s}",WiFi.SSID());
}
}
else {
str = FPSTR(HTTP_STATUS_NONE);
}
page += str;
}
/**
* HTTPD CALLBACK reset page
*/
void WiFiManager::handleReset() {
DEBUG_WM(F("<- HTTP Reset"));
String page = getHTTPHead("Reset"); //@token titlereset
page += F("Module will reset in a few seconds.");
page += FPSTR(HTTP_END);
server->sendHeader("Content-Length", String(page.length()));
server->send(200, "text/html", page);
DEBUG_WM(F("RESETTING ESP"));
delay(1000);
reboot();
}
/**
* HTTPD CALLBACK erase page
*/
void WiFiManager::handleErase() {
DEBUG_WM(F("<- HTTP Erase"));
String page = getHTTPHead("Erase"); // @token titleerase
page += FPSTR(HTTP_HEAD_END);
bool ret = WiFi_eraseConfig();
if(ret) page += F("Module will reset in a few seconds."); // @token resetting
else {
page += F("An Error Occured"); // @token erroroccur
DEBUG_WM(F("[ERROR] WiFi EraseConfig failed"));
}
page += FPSTR(HTTP_END);
server->sendHeader("Content-Length", String(page.length()));
server->send(200, "text/html", page);
if(ret){
delay(2000);
DEBUG_WM(F("RESETTING ESP"));
reboot();
}
}
void WiFiManager::handleNotFound() {
if (captivePortal()) return; // If captive portal redirect instead of displaying the page
String message = "File Not Found\n\n"; // @token notfound
message += "URI: "; // @token uri
message += server->uri();
message += "\nMethod: "; // @token method
message += ( server->method() == HTTP_GET ) ? "GET" : "POST";
message += "\nArguments: "; // @token args
message += server->args();
message += "\n";
for ( uint8_t i = 0; i < server->args(); i++ ) {
message += " " + server->argName ( i ) + ": " + server->arg ( i ) + "\n";
}
server->sendHeader("Cache-Control", "no-cache, no-store, must-revalidate");
server->sendHeader("Pragma", "no-cache");
server->sendHeader("Expires", "-1");
server->sendHeader("Content-Length", String(message.length()));
server->send ( 404, "text/plain", message );
}
/**
* HTTPD redirector
* Redirect to captive portal if we got a request for another domain.
* Return true in that case so the page handler do not try to handle the request again.
*/
boolean WiFiManager::captivePortal() {
DEBUG_WM("-> " + server->hostHeader());
if(!_enableCaptivePortal) return false; // skip redirections
if (!isIp(server->hostHeader())) {
DEBUG_WM(F("<- Request redirected to captive portal"));
server->sendHeader("Location", String("http://") + toStringIp(server->client().localIP()), true);
server->send ( 302, "text/plain", ""); // Empty content inhibits Content-length header so we have to close the socket ourselves.
server->client().stop(); // Stop is needed because we sent no content length
return true;
}
return false;
}
// MORE SETTERS
//start up config portal callback
void WiFiManager::setAPCallback( void (*func)(WiFiManager* myWiFiManager) ) {
_apcallback = func;
}
//start up save config callback
void WiFiManager::setSaveConfigCallback( void (*func)(void) ) {
_savecallback = func;
}
//sets a custom element to add to head, like a new style tag
void WiFiManager::setCustomHeadElement(const char* element) {
_customHeadElement = element;
}
//if this is true, remove duplicated Access Points - defaut true
void WiFiManager::setRemoveDuplicateAPs(boolean removeDuplicates) {
_removeDuplicateAPs = removeDuplicates;
}
//if this is true, remove duplicated Access Points - defaut true
void WiFiManager::setConfigPortalBlocking(boolean shoudlBlock) {
_configPortalIsBlocking = shoudlBlock;
}
//setter for ESP wifi.persistent so we can remember it and restore user preference, as WIFi._persistent is protected
void WiFiManager::setRestorePersistent(boolean persistent) {
_userpersistent = persistent;
if(!persistent) DEBUG_WM(F("persistent is off"));
}
void WiFiManager::setShowStaticFields(boolean alwaysShow){
_sta_show_static_fields = alwaysShow;
}
void WiFiManager::setCaptivePortalEnable(boolean enabled){
_enableCaptivePortal = enabled;
}
void WiFiManager::setWiFiAutoReconnect(boolean enabled){
_wifiAutoReconnect = enabled;
}
// HELPERS
template <typename Generic>
void WiFiManager::DEBUG_WM(Generic text) {
if (_debug) {
_debugPort.print("*WM: ");
_debugPort.print(text);
_debugPort.print("\n");
}
}
template <typename Generic, typename Genericb>
void WiFiManager::DEBUG_WM(Generic text,Genericb textb) {
if (_debug) {
_debugPort.print("*WM: ");
_debugPort.print(text);
_debugPort.print(" ");
_debugPort.print(textb);
_debugPort.print("\n");
}
}
void WiFiManager::debugSoftAPConfig(){
#ifdef ESP8266
softap_config config;
wifi_softap_get_config(&config);
DEBUG_WM(F("SoftAP Configuration"));
DEBUG_WM(F("--------------------"));
DEBUG_WM(F("ssid: "),(char *) config.ssid);
DEBUG_WM(F("password: "),(char *) config.password);
DEBUG_WM(F("ssid_len: "),config.ssid_len);
DEBUG_WM(F("channel: "),config.channel);
DEBUG_WM(F("authmode: "),config.authmode);
DEBUG_WM(F("ssid_hidden: "),config.ssid_hidden);
DEBUG_WM(F("max_connection: "),config.max_connection);
DEBUG_WM(F("beacon_interval: "),(String)config.beacon_interval + "(ms)");
DEBUG_WM(F("--------------------"));
#endif
}
void WiFiManager::debugPlatformInfo(){
#ifdef ESP8266
system_print_meminfo();
DEBUG_WM("getCoreVersion():",ESP.getCoreVersion());
DEBUG_WM("system_get_sdk_version():",system_get_sdk_version());
DEBUG_WM("system_get_boot_version():",system_get_boot_version());
#elif defined(ESP32)
size_t freeHeap = heap_caps_get_free_size(MALLOC_CAP_8BIT);
DEBUG_WM("Free heap: ", freeHeap);
DEBUG_WM("ESP-IDF version: ", esp_get_idf_version());
#endif
}
int WiFiManager::getRSSIasQuality(int RSSI) {
int quality = 0;
if (RSSI <= -100) {
quality = 0;
} else if (RSSI >= -50) {
quality = 100;
} else {
quality = 2 * (RSSI + 100);
}
return quality;
}
/** Is this an IP? */
boolean WiFiManager::isIp(String str) {
for (int i = 0; i < str.length(); i++) {
int c = str.charAt(i);
if (c != '.' && (c < '0' || c > '9')) {
return false;
}
}
return true;
}
/** IP to String? */
String WiFiManager::toStringIp(IPAddress ip) {
String res = "";
for (int i = 0; i < 3; i++) {
res += String((ip >> (8 * i)) & 0xFF) + ".";
}
res += String(((ip >> 8 * 3)) & 0xFF);
return res;
}
boolean WiFiManager::validApPassword(){
// check that ap password is valid, return false
if (_apPassword == NULL) _apPassword = "";
if (_apPassword != "") {
if (_apPassword.length() < 8 || _apPassword.length() > 63) {
DEBUG_WM(F("AccessPoint set password is INVALID"));
_apPassword = "";
return false; // @todo FATAL or fallback to empty ?
}
DEBUG_WM(F("AccessPoint set password is VALID"));
DEBUG_WM(_apPassword);
}
return true;
}
String WiFiManager::getWLStatusString(uint8_t status){
const char * const WIFI_STA_STATUS[]
{
"WL_IDLE_STATUS",
"WL_NO_SSID_AVAIL",
"WL_SCAN_COMPLETED",
"WL_CONNECTED",
"WL_CONNECT_FAILED",
"WL_CONNECTION_LOST",
"WL_DISCONNECTED"
};
if(status >=0 && status <=6) return WIFI_STA_STATUS[status];
return "UNKNOWN";
}
String WiFiManager::encryptionTypeStr(uint8_t authmode) {
#ifdef ESP8266
switch(authmode) {
case ENC_TYPE_NONE:
return "None";
case ENC_TYPE_WEP:
return "WEP";
case ENC_TYPE_TKIP:
return "WPA_PSK";
case ENC_TYPE_CCMP:
return "WPA2_PSK";
case ENC_TYPE_AUTO:
return "WPA_WPA2_PSK";
default:
return "Unknown";
}
#elif defined(ESP32)
switch(authmode) {
case WIFI_AUTH_OPEN:
return "None";
case WIFI_AUTH_WEP:
return "WEP";
case WIFI_AUTH_WPA_PSK:
return "WPA_PSK";
case WIFI_AUTH_WPA_WPA2_PSK:
return "WPA2_PSK";
case WIFI_AUTH_WPA2_ENTERPRISE:
return "WPA_WPA2_ENTERPRISE";
case WIFI_AUTH_MAX:
return "MAX";
default:
return "Unknown";
}
#endif
}
// set mode ignores WiFi.persistent
bool WiFiManager::WiFi_Mode(WiFiMode_t m,bool persistent) {
#ifdef ESP8266
if((wifi_get_opmode() == (uint8) m ) && !persistent) {
return true;
}
bool ret;
ETS_UART_INTR_DISABLE();
if(persistent) ret = wifi_set_opmode(m);
else ret = wifi_set_opmode_current(m);
ETS_UART_INTR_ENABLE();
return ret;
#elif defined(ESP32)
return WiFi.mode(m); // @todo persistent not implemented?
#endif
}
bool WiFiManager::WiFi_Mode(WiFiMode_t m) {
return WiFi_Mode(m,false);
}
// sta disconnect without persistent
bool WiFiManager::WiFi_Disconnect() {
#ifdef ESP8266
if((WiFi.getMode() & WIFI_STA) != 0) {
bool ret;
DEBUG_WM(F("wifi station disconnect"));
ETS_UART_INTR_DISABLE();
ret = wifi_station_disconnect();
ETS_UART_INTR_ENABLE();
return ret;
}
#elif defined(ESP32)
DEBUG_WM(F("wifi station disconnect"));
// @todo why does disconnect call these, might be needed
// WiFi.getMode(); // @todo wifiLowLevelInit(), probably not needed, for save config only
// esp_wifi_start(); // @todo can only disconnect if enabled perhaps, prevent failure, or correct for previous call ?
return esp_wifi_disconnect() == ESP_OK;
// return WiFi.disconnect();
#endif
}
// toggle STA without persistent
bool WiFiManager::WiFi_enableSTA(bool enable,bool persistent) {
WiFiMode_t newMode;
WiFiMode_t currentMode = WiFi.getMode();
bool isEnabled = (currentMode & WIFI_STA) != 0;
if(enable) newMode = (WiFiMode_t)(currentMode | WIFI_STA);
else newMode = (WiFiMode_t)(currentMode & (~WIFI_STA));
#ifdef ESP8266
if((isEnabled != enable) || persistent) {
if(enable) {
if(persistent) DEBUG_WM(F("enableSTA PERSISTENT ON"));
return WiFi_Mode(newMode,persistent);
} else {
return WiFi_Mode(newMode,persistent);
}
} else {
return true;
}
#elif defined(ESP32)
return WiFi.mode(newMode); // @todo persistent not implemented?
#endif
}
bool WiFiManager::WiFi_enableSTA(bool enable) {
return WiFi_enableSTA(enable,false);
}
bool WiFiManager::WiFi_eraseConfig(void) {
#ifdef ESP8266
return ESP.eraseConfig();
// https://github.com/esp8266/Arduino/pull/3635
// erase config BUG polyfill
// const size_t cfgSize = 0x4000;
// size_t cfgAddr = ESP.getFlashChipSize() - cfgSize;
// for (size_t offset = 0; offset < cfgSize; offset += SPI_FLASH_SEC_SIZE) {
// if (!ESP.flashEraseSector((cfgAddr + offset) / SPI_FLASH_SEC_SIZE)) {
// return false;
// }
// }
// return true;
#elif defined(ESP32)
WiFi.mode(WIFI_AP_STA); // cannot erase if not in STA mode
return WiFi.disconnect(true);
#endif
}
void WiFiManager::reboot(){
ESP.restart();
}
uint8_t WiFiManager::WiFi_softap_num_stations(){
#ifdef ESP8266
return wifi_softap_get_station_num();
#elif defined(ESP32)
return WiFi.softAPgetStationNum();
#endif
}
bool WiFiManager::WiFi_hasAutoConnect(){
return WiFi_SSID() != "";
}
String WiFiManager::WiFi_SSID(){
#ifdef ESP8266
return WiFi.SSID();
#elif defined(ESP32)
wifi_config_t conf;
esp_wifi_get_config(WIFI_IF_STA, &conf);
return String(reinterpret_cast<const char*>(conf.sta.ssid));
#endif
}
void WiFiManager::WiFiEvent(WiFiEvent_t event){
#ifdef ESP32
WiFiManager _WiFiManager;
if(event == SYSTEM_EVENT_STA_DISCONNECTED){
// Serial.println("Event: SYSTEM_EVENT_STA_DISCONNECTED, reconnecting");
_WiFiManager.DEBUG_WM("ESP32 Event: SYSTEM_EVENT_STA_DISCONNECTED, reconnecting"); // @todo remove debugging from prod, or change static method
WiFi.reconnect();
}
#endif
}
void WiFiManager::WiFi_autoReconnect(){
#ifdef ESP8266
WiFi.setAutoReconnect(_wifiAutoReconnect);
#elif defined(ESP32)
if(_wifiAutoReconnect){
DEBUG_WM("ESP32 autoreconnect handler enabled");
WiFi.onEvent(WiFiEvent);
}
#endif
}