mirror of
https://github.com/esp8266/Arduino.git
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469 lines
11 KiB
C++
469 lines
11 KiB
C++
/*
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ESP8266WiFi.cpp - WiFi library for esp8266
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Copyright (c) 2014 Ivan Grokhotkov. All rights reserved.
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This file is part of the esp8266 core for Arduino environment.
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This library is free software; you can redistribute it and/or
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modify it under the terms of the GNU Lesser General Public
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License as published by the Free Software Foundation; either
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version 2.1 of the License, or (at your option) any later version.
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This library is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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Lesser General Public License for more details.
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You should have received a copy of the GNU Lesser General Public
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License along with this library; if not, write to the Free Software
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Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
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*/
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#include "ESP8266WiFi.h"
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extern "C" {
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#include "c_types.h"
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#include "ets_sys.h"
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#include "os_type.h"
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#include "osapi.h"
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#include "mem.h"
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#include "user_interface.h"
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#include "smartconfig.h"
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#include "lwip/opt.h"
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#include "lwip/err.h"
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#include "lwip/dns.h"
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}
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extern "C" void esp_schedule();
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extern "C" void esp_yield();
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ESP8266WiFiClass::ESP8266WiFiClass()
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{
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}
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void ESP8266WiFiClass::mode(WiFiMode m)
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{
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ETS_UART_INTR_DISABLE();
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wifi_set_opmode(m);
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ETS_UART_INTR_ENABLE();
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}
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int ESP8266WiFiClass::begin(const char* ssid)
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{
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return begin(ssid, 0);
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}
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int ESP8266WiFiClass::begin(const char* ssid, const char *passphrase)
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{
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if ((wifi_get_opmode() & 1) == 0)//1 and 3 have STA enabled
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{
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// turn on AP+STA mode
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mode(WIFI_AP_STA);
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}
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struct station_config conf;
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strcpy(reinterpret_cast<char*>(conf.ssid), ssid);
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if (passphrase)
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strcpy(reinterpret_cast<char*>(conf.password), passphrase);
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else
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*conf.password = 0;
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conf.bssid_set = 0;
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ETS_UART_INTR_DISABLE();
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wifi_station_set_config(&conf);
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wifi_station_connect();
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ETS_UART_INTR_ENABLE();
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wifi_station_dhcpc_start();
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return status();
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}
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void ESP8266WiFiClass::config(IPAddress local_ip, IPAddress gateway, IPAddress subnet)
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{
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struct ip_info info;
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info.ip.addr = static_cast<uint32_t>(local_ip);
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info.gw.addr = static_cast<uint32_t>(gateway);
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info.netmask.addr = static_cast<uint32_t>(subnet);
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wifi_station_dhcpc_stop();
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wifi_set_ip_info(STATION_IF, &info);
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}
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int ESP8266WiFiClass::disconnect()
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{
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struct station_config conf;
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*conf.ssid = 0;
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*conf.password = 0;
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ETS_UART_INTR_DISABLE();
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wifi_station_set_config(&conf);
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wifi_station_disconnect();
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ETS_UART_INTR_ENABLE();
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return 0;
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}
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void ESP8266WiFiClass::softAP(const char* ssid)
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{
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softAP(ssid, 0);
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}
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void ESP8266WiFiClass::softAP(const char* ssid, const char* passphrase, int channel)
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{
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if (wifi_get_opmode() < WIFI_AP)//will be OFF or STA
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{
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// turn on AP+STA mode
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mode(WIFI_AP_STA);
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}
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struct softap_config conf;
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wifi_softap_get_config(&conf);
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strcpy(reinterpret_cast<char*>(conf.ssid), ssid);
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conf.channel = channel;
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conf.ssid_len = strlen(ssid);
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conf.ssid_hidden = 0;
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conf.max_connection = 4;
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conf.beacon_interval = 100;
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if (!passphrase || strlen(passphrase) == 0)
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{
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conf.authmode = AUTH_OPEN;
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*conf.password = 0;
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}
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else
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{
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conf.authmode = AUTH_WPA2_PSK;
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strcpy(reinterpret_cast<char*>(conf.password), passphrase);
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}
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ETS_UART_INTR_DISABLE();
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wifi_softap_set_config(&conf);
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ETS_UART_INTR_ENABLE();
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}
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void ESP8266WiFiClass::softAPConfig(IPAddress local_ip, IPAddress gateway, IPAddress subnet)
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{
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struct ip_info info;
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info.ip.addr = static_cast<uint32_t>(local_ip);
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info.gw.addr = static_cast<uint32_t>(gateway);
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info.netmask.addr = static_cast<uint32_t>(subnet);
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wifi_softap_dhcps_stop();
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wifi_set_ip_info(SOFTAP_IF, &info);
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wifi_softap_dhcps_start();
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}
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uint8_t* ESP8266WiFiClass::macAddress(uint8_t* mac)
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{
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wifi_get_macaddr(STATION_IF, mac);
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return mac;
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}
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uint8_t* ESP8266WiFiClass::softAPmacAddress(uint8_t* mac)
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{
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wifi_get_macaddr(SOFTAP_IF, mac);
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return mac;
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}
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IPAddress ESP8266WiFiClass::localIP()
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{
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struct ip_info ip;
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wifi_get_ip_info(STATION_IF, &ip);
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return IPAddress(ip.ip.addr);
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}
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IPAddress ESP8266WiFiClass::softAPIP()
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{
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struct ip_info ip;
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wifi_get_ip_info(SOFTAP_IF, &ip);
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return IPAddress(ip.ip.addr);
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}
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IPAddress ESP8266WiFiClass::subnetMask()
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{
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struct ip_info ip;
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wifi_get_ip_info(STATION_IF, &ip);
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return IPAddress(ip.netmask.addr);
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}
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IPAddress ESP8266WiFiClass::gatewayIP()
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{
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struct ip_info ip;
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wifi_get_ip_info(STATION_IF, &ip);
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return IPAddress(ip.gw.addr);
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}
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char* ESP8266WiFiClass::SSID()
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{
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static struct station_config conf;
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wifi_station_get_config(&conf);
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return reinterpret_cast<char*>(conf.ssid);
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}
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// uint8_t* ESP8266WiFiClass::BSSID(uint8_t* bssid)
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// {
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// uint8_t* _bssid = WiFiDrv::getCurrentBSSID();
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// memcpy(bssid, _bssid, WL_MAC_ADDR_LENGTH);
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// return bssid;
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// }
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// int32_t ESP8266WiFiClass::RSSI()
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// {
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// return WiFiDrv::getCurrentRSSI();
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// }
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// uint8_t ESP8266WiFiClass::encryptionType()
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// {
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// return WiFiDrv::getCurrentEncryptionType();
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// }
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extern "C"
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{
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typedef STAILQ_HEAD(, bss_info) bss_info_head_t;
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}
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void ESP8266WiFiClass::_scanDone(void* result, int status)
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{
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if (status != OK)
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{
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ESP8266WiFiClass::_scanCount = 0;
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ESP8266WiFiClass::_scanResult = 0;
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}
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else
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{
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int i = 0;
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bss_info_head_t* head = reinterpret_cast<bss_info_head_t*>(result);
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for (bss_info* it = STAILQ_FIRST(head); it; it = STAILQ_NEXT(it, next), ++i);
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ESP8266WiFiClass::_scanCount = i;
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if (i == 0)
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{
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ESP8266WiFiClass::_scanResult = 0;
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}
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else
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{
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bss_info* copied_info = new bss_info[i];
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i = 0;
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for (bss_info* it = STAILQ_FIRST(head); it; it = STAILQ_NEXT(it, next), ++i)
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{
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memcpy(copied_info + i, it, sizeof(bss_info));
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}
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ESP8266WiFiClass::_scanResult = copied_info;
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}
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}
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esp_schedule();
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}
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int8_t ESP8266WiFiClass::scanNetworks()
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{
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if ((wifi_get_opmode() & 1) == 0)//1 and 3 have STA enabled
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{
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mode(WIFI_AP_STA);
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}
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int status = wifi_station_get_connect_status();
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if (status != STATION_GOT_IP && status != STATION_IDLE)
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{
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disconnect();
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}
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if (ESP8266WiFiClass::_scanResult)
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{
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delete[] reinterpret_cast<bss_info*>(ESP8266WiFiClass::_scanResult);
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ESP8266WiFiClass::_scanResult = 0;
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ESP8266WiFiClass::_scanCount = 0;
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}
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struct scan_config config;
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config.ssid = 0;
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config.bssid = 0;
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config.channel = 0;
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config.show_hidden = 0;
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wifi_station_scan(&config, reinterpret_cast<scan_done_cb_t>(&ESP8266WiFiClass::_scanDone));
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esp_yield();
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return ESP8266WiFiClass::_scanCount;
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}
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void * ESP8266WiFiClass::_getScanInfoByIndex(int i)
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{
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if (!ESP8266WiFiClass::_scanResult || i > ESP8266WiFiClass::_scanCount)
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{
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return 0;
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}
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return reinterpret_cast<bss_info*>(ESP8266WiFiClass::_scanResult) + i;
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}
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const char* ESP8266WiFiClass::SSID(uint8_t i)
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{
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struct bss_info* it = reinterpret_cast<struct bss_info*>(_getScanInfoByIndex(i));
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if (!it)
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return 0;
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return reinterpret_cast<const char*>(it->ssid);
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}
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int32_t ESP8266WiFiClass::RSSI(uint8_t i)
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{
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struct bss_info* it = reinterpret_cast<struct bss_info*>(_getScanInfoByIndex(i));
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if (!it)
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return 0;
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return it->rssi;
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}
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uint8_t ESP8266WiFiClass::encryptionType(uint8_t i)
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{
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struct bss_info* it = reinterpret_cast<struct bss_info*>(_getScanInfoByIndex(i));
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if (!it)
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return -1;
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int authmode = it->authmode;
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if (authmode == AUTH_OPEN)
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return ENC_TYPE_NONE;
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if (authmode == AUTH_WEP)
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return ENC_TYPE_WEP;
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if (authmode == AUTH_WPA_PSK)
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return ENC_TYPE_TKIP;
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if (authmode == AUTH_WPA2_PSK)
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return ENC_TYPE_CCMP;
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if (authmode == AUTH_WPA_WPA2_PSK)
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return ENC_TYPE_AUTO;
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return -1;
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}
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uint8_t ESP8266WiFiClass::status()
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{
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int status = wifi_station_get_connect_status();
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if (status == STATION_GOT_IP)
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return WL_CONNECTED;
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else if (status == STATION_NO_AP_FOUND)
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return WL_NO_SSID_AVAIL;
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else if (status == STATION_CONNECT_FAIL || status == STATION_WRONG_PASSWORD)
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return WL_CONNECT_FAILED;
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else if (status == STATION_IDLE)
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return WL_IDLE_STATUS;
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else
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return WL_DISCONNECTED;
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}
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void wifi_dns_found_callback(const char *name, ip_addr_t *ipaddr, void *callback_arg)
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{
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if (ipaddr)
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(*reinterpret_cast<IPAddress*>(callback_arg)) = ipaddr->addr;
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esp_schedule(); // resume the hostByName function
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}
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int ESP8266WiFiClass::hostByName(const char* aHostname, IPAddress& aResult)
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{
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ip_addr_t addr;
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aResult = static_cast<uint32_t>(0);
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err_t err = dns_gethostbyname(aHostname, &addr, &wifi_dns_found_callback, &aResult);
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if (err == ERR_OK)
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{
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aResult = addr.addr;
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}
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else if (err == ERR_INPROGRESS)
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{
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esp_yield();
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// will return here when dns_found_callback fires
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}
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return (aResult != 0) ? 1 : 0;
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}
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void ESP8266WiFiClass::beginSmartConfig()
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{
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if (_smartConfigStarted)
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return;
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if ((wifi_get_opmode() & 1) == 0)//1 and 3 have STA enabled
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{
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mode(WIFI_AP_STA);
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}
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_smartConfigStarted = true;
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//SC_TYPE_ESPTOUCH use ESPTOUCH for smartconfig, or use SC_TYPE_AIRKISS for AIRKISS
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smartconfig_start(SC_TYPE_ESPTOUCH, &ESP8266WiFiClass::_smartConfigDone);
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}
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void ESP8266WiFiClass::stopSmartConfig()
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{
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if (!_smartConfigStarted)
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return;
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smartconfig_stop();
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_smartConfigStarted = false;
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}
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bool ESP8266WiFiClass::smartConfigDone(){
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if (!_smartConfigStarted)
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return false;
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return smartconfig_get_status() == SC_STATUS_LINK_OVER;
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}
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void ESP8266WiFiClass::_smartConfigDone(void* result)
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{
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station_config* sta_conf = reinterpret_cast<station_config*>(result);
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wifi_station_set_config(sta_conf);
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wifi_station_disconnect();
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wifi_station_connect();
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}
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void ESP8266WiFiClass::printDiag(Print& p)
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{
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const char* modes[] = {"NULL", "STA", "AP", "STA+AP"};
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p.print("Mode: ");
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p.println(modes[wifi_get_opmode()]);
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const char* phymodes[] = {"", "B", "G", "N"};
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p.print("PHY mode: ");
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p.println(phymodes[(int) wifi_get_phy_mode()]);
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p.print("Channel: ");
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p.println(wifi_get_channel());
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p.print("AP id: ");
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p.println(wifi_station_get_current_ap_id());
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p.print("Status: ");
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p.println(wifi_station_get_connect_status());
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p.print("Auto connect: ");
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p.println(wifi_station_get_auto_connect());
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static struct station_config conf;
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wifi_station_get_config(&conf);
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const char* ssid = reinterpret_cast<const char*>(conf.ssid);
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p.print("SSID (");
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p.print(strlen(ssid));
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p.print("): ");
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p.println(ssid);
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const char* passphrase = reinterpret_cast<const char*>(conf.password);
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p.print("Passphrase (");
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p.print(strlen(passphrase));
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p.print("): ");
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p.println(passphrase);
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p.print("BSSID set: ");
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p.println(conf.bssid_set);
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}
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size_t ESP8266WiFiClass::_scanCount = 0;
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void* ESP8266WiFiClass::_scanResult = 0;
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ESP8266WiFiClass WiFi;
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