Detectar tipo de conexión de red en Android


186

¿Cómo se detecta el tipo de conexión de red en Android?

¿Ya pasó ConnectivityManager.getActiveNetworkInfo().getType()y la respuesta se limita a Wifi y dispositivos móviles?

Respuestas:


448

Si el problema es encontrar si la red del teléfono está conectada y es lo suficientemente rápida como para satisfacer sus demandas, debe manejar todos los tipos de red devueltos por getSubType().

Me llevó una o dos horas investigar y escribir esta clase para hacer exactamente eso, y pensé en compartirla con otros que pudieran encontrarla útil.

Aquí hay un resumen de la clase , por lo que puede bifurcarlo y editarlo.

package com.emil.android.util;

import android.content.Context;
import android.net.ConnectivityManager;
import android.net.NetworkInfo;
import android.telephony.TelephonyManager;

/**
 * Check device's network connectivity and speed 
 * @author emil http://stackoverflow.com/users/220710/emil
 *
 */
public class Connectivity {

    /**
     * Get the network info
     * @param context
     * @return
     */
    public static NetworkInfo getNetworkInfo(Context context){
        ConnectivityManager cm = (ConnectivityManager) context.getSystemService(Context.CONNECTIVITY_SERVICE);
        return cm.getActiveNetworkInfo();
    }

    /**
     * Check if there is any connectivity
     * @param context
     * @return
     */
    public static boolean isConnected(Context context){
        NetworkInfo info = Connectivity.getNetworkInfo(context);
        return (info != null && info.isConnected());
    }

    /**
     * Check if there is any connectivity to a Wifi network
     * @param context
     * @return
     */
    public static boolean isConnectedWifi(Context context){
        NetworkInfo info = Connectivity.getNetworkInfo(context);
        return (info != null && info.isConnected() && info.getType() == ConnectivityManager.TYPE_WIFI);
    }

    /**
     * Check if there is any connectivity to a mobile network
     * @param context
     * @return
     */
    public static boolean isConnectedMobile(Context context){
        NetworkInfo info = Connectivity.getNetworkInfo(context);
        return (info != null && info.isConnected() && info.getType() == ConnectivityManager.TYPE_MOBILE);
    }

    /**
     * Check if there is fast connectivity
     * @param context
     * @return
     */
    public static boolean isConnectedFast(Context context){
        NetworkInfo info = Connectivity.getNetworkInfo(context);
        return (info != null && info.isConnected() && Connectivity.isConnectionFast(info.getType(),info.getSubtype()));
    }

    /**
     * Check if the connection is fast
     * @param type
     * @param subType
     * @return
     */
    public static boolean isConnectionFast(int type, int subType){
        if(type==ConnectivityManager.TYPE_WIFI){
            return true;
        }else if(type==ConnectivityManager.TYPE_MOBILE){
            switch(subType){
            case TelephonyManager.NETWORK_TYPE_1xRTT:
                return false; // ~ 50-100 kbps
            case TelephonyManager.NETWORK_TYPE_CDMA:
                return false; // ~ 14-64 kbps
            case TelephonyManager.NETWORK_TYPE_EDGE:
                return false; // ~ 50-100 kbps
            case TelephonyManager.NETWORK_TYPE_EVDO_0:
                return true; // ~ 400-1000 kbps
            case TelephonyManager.NETWORK_TYPE_EVDO_A:
                return true; // ~ 600-1400 kbps
            case TelephonyManager.NETWORK_TYPE_GPRS:
                return false; // ~ 100 kbps
            case TelephonyManager.NETWORK_TYPE_HSDPA:
                return true; // ~ 2-14 Mbps
            case TelephonyManager.NETWORK_TYPE_HSPA:
                return true; // ~ 700-1700 kbps
            case TelephonyManager.NETWORK_TYPE_HSUPA:
                return true; // ~ 1-23 Mbps
            case TelephonyManager.NETWORK_TYPE_UMTS:
                return true; // ~ 400-7000 kbps
            /*
             * Above API level 7, make sure to set android:targetSdkVersion 
             * to appropriate level to use these
             */
            case TelephonyManager.NETWORK_TYPE_EHRPD: // API level 11 
                return true; // ~ 1-2 Mbps
            case TelephonyManager.NETWORK_TYPE_EVDO_B: // API level 9
                return true; // ~ 5 Mbps
            case TelephonyManager.NETWORK_TYPE_HSPAP: // API level 13
                return true; // ~ 10-20 Mbps
            case TelephonyManager.NETWORK_TYPE_IDEN: // API level 8
                return false; // ~25 kbps 
            case TelephonyManager.NETWORK_TYPE_LTE: // API level 11
                return true; // ~ 10+ Mbps
            // Unknown
            case TelephonyManager.NETWORK_TYPE_UNKNOWN:
            default:
                return false;
            }
        }else{
            return false;
        }
    }

}

También asegúrese de agregar este permiso a su AndroidManifest.xml

<uses-permission android:name="android.permission.ACCESS_NETWORK_STATE"></uses-permission>

Las fuentes para velocidades de red incluyen wikipedia y http://3gstore.com/page/78_what_is_evdo_mobile_broadband.html


10
Gracias. Por cierto, todas las constantes para los tipos de red ( aquí ) son public static final int. Entonces no necesitas hacer el "hack". Solo apunte al SDK más nuevo, el compilador compila los valores reales (enteros) a los que apuntan (no sus instancias) en códigos de bytes.

3
@LaiVung Cuando respondí esto, acababa de comenzar a codificar para Android y no sabía cómo usar la targetSdkVersionconfiguración. Edité la publicación para eliminar el truco, gracias.
Emil Davtyan

3
Pero, ¿cómo puedo saber la velocidad del wifi? Porque tal vez descubras que tienes una conexión de alta velocidad pero tu wifi es demasiado lento ...
Terranology

1
Como todos los métodos son estáticos, esta clase podría declararse final y tener un constructor privado.
Gabriel

pero esto solo verifica si hay una conexión de red disponible y no si efectivamente existe una conexión a Internet. Por lo tanto, necesitaría hacer ping a un servidor, por ejemplo, para estar 100% seguro.
Sini

59

Para obtener una información más precisa (y fácil de usar) sobre el tipo de conexión. Puede usar este código (derivado de un método @hide en TelephonyManager.java ).

Este método devuelve una cadena que describe el tipo de conexión actual.
es decir, uno de: "WIFI", "2G", "3G", "4G", "5G", "-" (no conectado) o "?" (desconocido)

Observación: este código requiere API 25+, pero puede admitir fácilmente versiones anteriores utilizando int en lugar de const. (Ver comentarios en el código).

public static String getNetworkClass(Context context) {
    ConnectivityManager cm = (ConnectivityManager) context.getSystemService(Context.CONNECTIVITY_SERVICE);      
    NetworkInfo info = cm.getActiveNetworkInfo();
    if (info == null || !info.isConnected())
        return "-"; // not connected
    if (info.getType() == ConnectivityManager.TYPE_WIFI)
        return "WIFI";
    if (info.getType() == ConnectivityManager.TYPE_MOBILE) {
        int networkType = info.getSubtype();
        switch (networkType) {
            case TelephonyManager.NETWORK_TYPE_GPRS:
            case TelephonyManager.NETWORK_TYPE_EDGE:
            case TelephonyManager.NETWORK_TYPE_CDMA:
            case TelephonyManager.NETWORK_TYPE_1xRTT:
            case TelephonyManager.NETWORK_TYPE_IDEN:     // api< 8: replace by 11
            case TelephonyManager.NETWORK_TYPE_GSM:      // api<25: replace by 16
                return "2G";
            case TelephonyManager.NETWORK_TYPE_UMTS:
            case TelephonyManager.NETWORK_TYPE_EVDO_0:
            case TelephonyManager.NETWORK_TYPE_EVDO_A:
            case TelephonyManager.NETWORK_TYPE_HSDPA:
            case TelephonyManager.NETWORK_TYPE_HSUPA:
            case TelephonyManager.NETWORK_TYPE_HSPA:
            case TelephonyManager.NETWORK_TYPE_EVDO_B:   // api< 9: replace by 12
            case TelephonyManager.NETWORK_TYPE_EHRPD:    // api<11: replace by 14
            case TelephonyManager.NETWORK_TYPE_HSPAP:    // api<13: replace by 15
            case TelephonyManager.NETWORK_TYPE_TD_SCDMA: // api<25: replace by 17
                return "3G";
            case TelephonyManager.NETWORK_TYPE_LTE:      // api<11: replace by 13
            case TelephonyManager.NETWORK_TYPE_IWLAN:    // api<25: replace by 18
            case 19: // LTE_CA
                return "4G";
            case TelephonyManager.NETWORK_TYPE_NR:       // api<29: replace by 20
                return "5G";
            default:
                return "?";
         }
    }
    return "?";
}

¿Qué pasa si NETWORK_TYPE_IWLAN
Jyoti JK

53

Puede usar getSubtype () para obtener más detalles. Consulte la diapositiva 9 aquí: http://dl.google.com/io/2009/pres/W_0300_CodingforLife-BatteryLifeThatIs.pdf

ConnectivityManager mConnectivity = null;
TelephonyManager mTelephony = null;
// Skip if no connection, or background data disabled
NetworkInfo info = mConnectivity.getActiveNetworkInfo();
if (info == null || !mConnectivity.getBackgroundDataSetting()) {
    return false;
}

// Only update if WiFi or 3G is connected and not roaming
int netType = info.getType();
int netSubtype = info.getSubtype();
if (netType == ConnectivityManager.TYPE_WIFI) {
    return info.isConnected();
} else if (netType == ConnectivityManager.TYPE_MOBILE
    && netSubtype == TelephonyManager.NETWORK_TYPE_UMTS
    && !mTelephony.isNetworkRoaming()) {
        return info.isConnected();
} else {
    return false;
}

Además, consulte la respuesta de Emil para una inmersión más detallada en esto.


WiMAX también, ¿no? Tenía problemas para averiguar lo que era una red IP-capaz y lo que no lo era (MMS)
sehugg

1
Obtenga una instancia de la clase ConnectivityManager llamando a Context.getSystemService (Context.CONNECTIVITY_SERVICE).
Ernir Erlingsson

¿Cómo comprobar si hay internet o no en wifi? cualquiera tiene solución
Aman Jham

13

La respuesta de @ Emil arriba es brillante.

Pequeña adición: idealmente deberíamos usar TelephonyManager para detectar tipos de red. Por lo tanto, lo anterior debería leer:

/**
 * Check if there is fast connectivity
 * @param context
 * @return
 */
public static boolean isConnectedFast(Context context){
    ConnectivityManager cm = (ConnectivityManager) context.getSystemService(Context.CONNECTIVITY_SERVICE);
    NetworkInfo info = cm.getActiveNetworkInfo();
    TelephonyManager tm = (TelephonyManager) context.getSystemService(Context.TELEPHONY_SERVICE);
    return (info != null && info.isConnected() && Connectivity.isConnectionFast(info.getType(), tm.getNetworkType()));
}

7

La respuesta de Emil Davtyan es buena, pero se han agregado tipos de red que no se tienen en cuenta en su respuesta. Por lo tanto, isConnectionFast(int type, int subType)puede devolver falso cuando debería ser cierto.

Aquí hay una clase modificada que utiliza la reflexión para dar cuenta de los tipos de red agregados en las API posteriores:

import android.content.Context;
import android.net.ConnectivityManager;
import android.net.NetworkInfo;
import android.telephony.TelephonyManager;

import java.lang.reflect.InvocationTargetException;
import java.lang.reflect.Method;

/**
 * <p>Utility methods to check the current network connection status.</p>
 *
 * <p>This requires the caller to hold the permission
 * {@link android.Manifest.permission#ACCESS_NETWORK_STATE}.</p>
 */
public class NetworkUtils {

  /** The absence of a connection type. */
  public static final int TYPE_NONE = -1;

  /** Unknown network class. */
  public static final int NETWORK_CLASS_UNKNOWN = 0;
  /** Class of broadly defined "2G" networks. */
  public static final int NETWORK_CLASS_2_G = 1;
  /** Class of broadly defined "3G" networks. */
  public static final int NETWORK_CLASS_3_G = 2;
  /** Class of broadly defined "4G" networks. */
  public static final int NETWORK_CLASS_4_G = 3;

  /**
   * Returns details about the currently active default data network. When connected, this network
   * is the default route for outgoing connections. You should always check {@link
   * NetworkInfo#isConnected()} before initiating network traffic. This may return {@code null}
   * when there is no default network.
   *
   * @return a {@link NetworkInfo} object for the current default network or {@code null} if no
   * network default network is currently active
   *
   * This method requires the call to hold the permission
   * {@link android.Manifest.permission#ACCESS_NETWORK_STATE}.
   * @see ConnectivityManager#getActiveNetworkInfo()
   */
  public static NetworkInfo getInfo(Context context) {
    return ((ConnectivityManager) context.getSystemService(Context.CONNECTIVITY_SERVICE))
        .getActiveNetworkInfo();
  }

  /**
   * Reports the current network type.
   *
   * @return {@link ConnectivityManager#TYPE_MOBILE}, {@link ConnectivityManager#TYPE_WIFI} ,
   * {@link ConnectivityManager#TYPE_WIMAX}, {@link ConnectivityManager#TYPE_ETHERNET}, {@link
   * ConnectivityManager#TYPE_BLUETOOTH}, or other types defined by {@link ConnectivityManager}.
   * If there is no network connection then -1 is returned.
   * @see NetworkInfo#getType()
   */
  public static int getType(Context context) {
    NetworkInfo info = getInfo(context);
    if (info == null || !info.isConnected()) {
      return TYPE_NONE;
    }
    return info.getType();
  }

  /**
   * Return a network-type-specific integer describing the subtype of the network.
   *
   * @return the network subtype
   * @see NetworkInfo#getSubtype()
   */
  public static int getSubType(Context context) {
    NetworkInfo info = getInfo(context);
    if (info == null || !info.isConnected()) {
      return TYPE_NONE;
    }
    return info.getSubtype();
  }

  /** Returns the NETWORK_TYPE_xxxx for current data connection. */
  public static int getNetworkType(Context context) {
    return ((TelephonyManager) context.getSystemService(Context.TELEPHONY_SERVICE))
        .getNetworkType();
  }

  /** Check if there is any connectivity */
  public static boolean isConnected(Context context) {
    return getType(context) != TYPE_NONE;
  }

  /** Check if there is any connectivity to a Wifi network */
  public static boolean isWifiConnection(Context context) {
    NetworkInfo info = getInfo(context);
    if (info == null || !info.isConnected()) {
      return false;
    }
    switch (info.getType()) {
      case ConnectivityManager.TYPE_WIFI:
        return true;
      default:
        return false;
    }
  }

  /** Check if there is any connectivity to a mobile network */
  public static boolean isMobileConnection(Context context) {
    NetworkInfo info = getInfo(context);
    if (info == null || !info.isConnected()) {
      return false;
    }
    switch (info.getType()) {
      case ConnectivityManager.TYPE_MOBILE:
        return true;
      default:
        return false;
    }
  }

  /** Check if the current connection is fast. */
  public static boolean isConnectionFast(Context context) {
    NetworkInfo info = getInfo(context);
    if (info == null || !info.isConnected()) {
      return false;
    }
    switch (info.getType()) {
      case ConnectivityManager.TYPE_WIFI:
      case ConnectivityManager.TYPE_ETHERNET:
        return true;
      case ConnectivityManager.TYPE_MOBILE:
        int networkClass = getNetworkClass(getNetworkType(context));
        switch (networkClass) {
          case NETWORK_CLASS_UNKNOWN:
          case NETWORK_CLASS_2_G:
            return false;
          case NETWORK_CLASS_3_G:
          case NETWORK_CLASS_4_G:
            return true;
        }
      default:
        return false;
    }
  }

  private static int getNetworkClassReflect(int networkType)
      throws NoSuchMethodException, InvocationTargetException, IllegalAccessException {
    Method getNetworkClass = TelephonyManager.class.getDeclaredMethod("getNetworkClass", int.class);
    if (!getNetworkClass.isAccessible()) {
      getNetworkClass.setAccessible(true);
    }
    return (int) getNetworkClass.invoke(null, networkType);
  }

  /**
   * Return general class of network type, such as "3G" or "4G". In cases where classification is
   * contentious, this method is conservative.
   */
  public static int getNetworkClass(int networkType) {
    try {
      return getNetworkClassReflect(networkType);
    } catch (Exception ignored) {
    }

    switch (networkType) {
      case TelephonyManager.NETWORK_TYPE_GPRS:
      case 16: // TelephonyManager.NETWORK_TYPE_GSM:
      case TelephonyManager.NETWORK_TYPE_EDGE:
      case TelephonyManager.NETWORK_TYPE_CDMA:
      case TelephonyManager.NETWORK_TYPE_1xRTT:
      case TelephonyManager.NETWORK_TYPE_IDEN:
        return NETWORK_CLASS_2_G;
      case TelephonyManager.NETWORK_TYPE_UMTS:
      case TelephonyManager.NETWORK_TYPE_EVDO_0:
      case TelephonyManager.NETWORK_TYPE_EVDO_A:
      case TelephonyManager.NETWORK_TYPE_HSDPA:
      case TelephonyManager.NETWORK_TYPE_HSUPA:
      case TelephonyManager.NETWORK_TYPE_HSPA:
      case TelephonyManager.NETWORK_TYPE_EVDO_B:
      case TelephonyManager.NETWORK_TYPE_EHRPD:
      case TelephonyManager.NETWORK_TYPE_HSPAP:
      case 17: // TelephonyManager.NETWORK_TYPE_TD_SCDMA:
        return NETWORK_CLASS_3_G;
      case TelephonyManager.NETWORK_TYPE_LTE:
      case 18: // TelephonyManager.NETWORK_TYPE_IWLAN:
        return NETWORK_CLASS_4_G;
      default:
        return NETWORK_CLASS_UNKNOWN;
    }
  }

  private NetworkUtils() {
    throw new AssertionError();
  }

}

¿Cómo implementar esto a la actividad?
Joe

@ Joe Copie la clase a su proyecto y luego llame a uno de los métodos de utilidad estática de su actividad. Ejemplo:if (NetworkUtils.isWifiConnection(this) { /* do stuff */ }
Jared Rummler, el

@Jared Rummler ¿me pueden ayudar, cómo usar este código en dual sim enable mobile?
iOS

@Jared Rummler, hai Jared Rummler, ¿pueden ayudarme? Estoy obteniendo el tipo de red para una sola SIM, pero necesito el resultado para la SIM dual. Si es posible, por favor, ayúdame ...
iOS

@JaredRummler, ¿debería comprobar todas las funciones para saber cuál está disponible (o conectado) para llamar a mis cosas?
Arnold Brown el

4

Puede hacer un método personalizado para realizar esta tarea.

  public String getNetworkClass(Context context) {
        TelephonyManager mTelephonyManager = (TelephonyManager)
                context.getSystemService(Context.TELEPHONY_SERVICE);
        int networkType = mTelephonyManager.getNetworkType();
        switch (networkType) {
            case TelephonyManager.NETWORK_TYPE_GPRS:
            case TelephonyManager.NETWORK_TYPE_EDGE:
            case TelephonyManager.NETWORK_TYPE_CDMA:
            case TelephonyManager.NETWORK_TYPE_1xRTT:
            case TelephonyManager.NETWORK_TYPE_IDEN:
                return "2G";
            case TelephonyManager.NETWORK_TYPE_UMTS:
            case TelephonyManager.NETWORK_TYPE_EVDO_0:
            case TelephonyManager.NETWORK_TYPE_EVDO_A:
            case TelephonyManager.NETWORK_TYPE_HSDPA:
            case TelephonyManager.NETWORK_TYPE_HSUPA:
            case TelephonyManager.NETWORK_TYPE_HSPA:
            case TelephonyManager.NETWORK_TYPE_EVDO_B:
            case TelephonyManager.NETWORK_TYPE_EHRPD:
            case TelephonyManager.NETWORK_TYPE_HSPAP:
                return "3G";
            case TelephonyManager.NETWORK_TYPE_LTE:
                return "4G";
            default:
                return "Unknown";
        }
    }

2

Además de la impresionante respuesta de Emil, me gustaría agregar un método más, para verificar si realmente tiene acceso a Internet, ya que podría tener los datos desactivados en su teléfono.

public static boolean hasInternetAccess(Context c){
    TelephonyManager tm = (TelephonyManager) c.getSystemService(Context.TELEPHONY_SERVICE);
    if(isConnected(c) && tm.getDataState() == TelephonyManager.DATA_CONNECTED)
       return true;
    else
        return false;
}

Tenga en cuenta que esto es solo para verificar si hay una conexión de datos móviles y devolverá falso si tiene WiFi conectado, ya que los datos celulares están apagados cuando WiFi está conectado.


2

Puedes comprobar así

public void checktype() {
    ConnectivityManager cm = (ConnectivityManager) this.getSystemService(Context.CONNECTIVITY_SERVICE);
    NetworkInfo activeNetwork = cm.getActiveNetworkInfo();
    if (activeNetwork != null) { // connected to the internet
        if (activeNetwork.getType() == ConnectivityManager.TYPE_WIFI) {
            // connected to wifi
            Toast.makeText(this, activeNetwork.getTypeName(), Toast.LENGTH_SHORT).show();
        } else if (activeNetwork.getType() == ConnectivityManager.TYPE_MOBILE) {
            // connected to the mobile provider's data plan
            Toast.makeText(this, activeNetwork.getTypeName(), Toast.LENGTH_SHORT).show();
        }
    }
}

1
String active_network = ((ConnectivityManager)
    .getSystemService(Context.CONNECTIVITY_SERVICE))
    .getActiveNetworkInfo().getSubtypeName();

debería conseguirte el nombre de la red



0

Puedes probar esto:

public String ConnectionQuality() {
    NetworkInfo info = getInfo(context);
    if (info == null || !info.isConnected()) {
      return "UNKNOWN";
    }

    if(info.getType() == ConnectivityManager.TYPE_WIFI) {
        WifiManager wifiManager = (WifiManager) context.getSystemService(Context.WIFI_SERVICE);
        int numberOfLevels = 5;
        WifiInfo wifiInfo = wifiManager.getConnectionInfo();
        int level = WifiManager.calculateSignalLevel(wifiInfo.getRssi(), numberOfLevels);
        if(level == 2 )
                return "POOR";
            else if(level == 3 )
                return "MODERATE";
            else if(level == 4 )
                return "GOOD";
            else if(level == 5 )
                return "EXCELLENT";
            else
            return "UNKNOWN";
        }else if(info.getType() == ConnectivityManager.TYPE_MOBILE) {
            int networkClass = getNetworkClass(getNetworkType(context));
            if(networkClass == 1)
                return "POOR";
            else if(networkClass == 2 )
                return "GOOD";
            else if(networkClass == 3 )
                return "EXCELLENT";
            else
                return "UNKNOWN";
        }else
            return "UNKNOWN";  
}

public NetworkInfo getInfo(Context context) {
    return ((ConnectivityManager) context.getSystemService(Context.CONNECTIVITY_SERVICE)).getActiveNetworkInfo();
}

public int getNetworkClass(int networkType) {
    try {
      return getNetworkClassReflect(networkType);
    }catch (Exception ignored) {
    }

    switch (networkType) {
      case TelephonyManager.NETWORK_TYPE_GPRS:
      case 16: // TelephonyManager.NETWORK_TYPE_GSM:
      case TelephonyManager.NETWORK_TYPE_EDGE:
      case TelephonyManager.NETWORK_TYPE_CDMA:
      case TelephonyManager.NETWORK_TYPE_1xRTT:
      case TelephonyManager.NETWORK_TYPE_IDEN:
        return 1;
      case TelephonyManager.NETWORK_TYPE_UMTS:
      case TelephonyManager.NETWORK_TYPE_EVDO_0:
      case TelephonyManager.NETWORK_TYPE_EVDO_A:
      case TelephonyManager.NETWORK_TYPE_HSDPA:
      case TelephonyManager.NETWORK_TYPE_HSUPA:
      case TelephonyManager.NETWORK_TYPE_HSPA:
      case TelephonyManager.NETWORK_TYPE_EVDO_B:
      case TelephonyManager.NETWORK_TYPE_EHRPD:
      case TelephonyManager.NETWORK_TYPE_HSPAP:
      case 17: // TelephonyManager.NETWORK_TYPE_TD_SCDMA:
        return 2;
      case TelephonyManager.NETWORK_TYPE_LTE:
      case 18: // TelephonyManager.NETWORK_TYPE_IWLAN:
        return 3;
      default:
        return 0;
    }
}

private int getNetworkClassReflect(int networkType) throws NoSuchMethodException, InvocationTargetException, IllegalAccessException {  
    Method getNetworkClass = TelephonyManager.class.getDeclaredMethod("getNetworkClass", int.class);
    if (!getNetworkClass.isAccessible()) {
      getNetworkClass.setAccessible(true);
    }
    return (Integer) getNetworkClass.invoke(null, networkType); 
}

public static int getNetworkType(Context context) {
    return ((TelephonyManager) context.getSystemService(Context.TELEPHONY_SERVICE)).getNetworkType();
}

0

Detecte el tipo de red y obtenga el valor booleano de isconnected o no use debajo del fragmento

import android.content.Context;
import android.net.ConnectivityManager;
import android.net.NetworkInfo;
import android.telephony.TelephonyManager;
public class NetworkManagerUtils {

/**
 * Get the network info
 * @param context
 * @return
 */
public static NetworkInfo getNetworkInfo(Context context){
    ConnectivityManager cm = (ConnectivityManager) context.getSystemService(Context.CONNECTIVITY_SERVICE);
    return cm.getActiveNetworkInfo();
}

/**
 * Check if there is any connectivity
 * @param context
 * @return
 */
public static boolean isConnected(Context context){
    NetworkInfo info = NetworkManagerUtils.getNetworkInfo(context);
    return (info != null && info.isConnected());
}

/**
 * Check if there is any connectivity to a Wifi network
 * @param context.
 * @param type
 * @return
 */
public static boolean isConnectedWifi(Context context){
    NetworkInfo info = NetworkManagerUtils.getNetworkInfo(context);
    return (info != null && info.isConnected() && info.getType() == ConnectivityManager.TYPE_WIFI);
}

/**
 * Check if there is any connectivity to a mobile network
 * @param context
 * @param type
 * @return
 */
public static boolean isConnectedMobile(Context context){
    NetworkInfo info = NetworkManagerUtils.getNetworkInfo(context);
    return (info != null && info.isConnected() && info.getType() == ConnectivityManager.TYPE_MOBILE);
}

/**
 * Check if there is fast connectivity
 * @param context
 * @return
 */
public static boolean isConnectedFast(Context context){
    NetworkInfo info = NetworkManagerUtils.getNetworkInfo(context);
    return (info != null && info.isConnected() && NetworkManagerUtils.isConnectionFast(info.getType(),info.getSubtype()));
}

/**
 * Check if the connection is fast
 * @param type
 * @param subType
 * @return
 */
public static boolean isConnectionFast(int type, int subType){
    if(type== ConnectivityManager.TYPE_WIFI){
        return true;
    }else if(type==ConnectivityManager.TYPE_MOBILE){
        switch(subType){
            case TelephonyManager.NETWORK_TYPE_1xRTT:
                return false; // ~ 50-100 kbps
            case TelephonyManager.NETWORK_TYPE_CDMA:
                return false; // ~ 14-64 kbps
            case TelephonyManager.NETWORK_TYPE_EDGE:
                return false; // ~ 50-100 kbps
            case TelephonyManager.NETWORK_TYPE_EVDO_0:
                return true; // ~ 400-1000 kbps
            case TelephonyManager.NETWORK_TYPE_EVDO_A:
                return true; // ~ 600-1400 kbps
            case TelephonyManager.NETWORK_TYPE_GPRS:
                return false; // ~ 100 kbps
            case TelephonyManager.NETWORK_TYPE_HSDPA:
                return true; // ~ 2-14 Mbps
            case TelephonyManager.NETWORK_TYPE_HSPA:
                return true; // ~ 700-1700 kbps
            case TelephonyManager.NETWORK_TYPE_HSUPA:
                return true; // ~ 1-23 Mbps
            case TelephonyManager.NETWORK_TYPE_UMTS:
                return true; // ~ 400-7000 kbps
            /*
             * Above API level 7, make sure to set android:targetSdkVersion
             * to appropriate level to use these
             */
            case TelephonyManager.NETWORK_TYPE_EHRPD: // API level 11
                return true; // ~ 1-2 Mbps
            case TelephonyManager.NETWORK_TYPE_EVDO_B: // API level 9
                return true; // ~ 5 Mbps
            case TelephonyManager.NETWORK_TYPE_HSPAP: // API level 13
                return true; // ~ 10-20 Mbps
            case TelephonyManager.NETWORK_TYPE_IDEN: // API level 8
                return false; // ~25 kbps
            case TelephonyManager.NETWORK_TYPE_LTE: // API level 11
                return true; // ~ 10+ Mbps
            // Unknown
            case TelephonyManager.NETWORK_TYPE_UNKNOWN:
            default:
                return false;
        }
    }else{
        return false;
    }
}
public static String getNetworkClass(Context context) {
    ConnectivityManager cm = (ConnectivityManager) context.getSystemService(Context.CONNECTIVITY_SERVICE);
    NetworkInfo info = cm.getActiveNetworkInfo();
    if (info == null || !info.isConnected())
        return "-"; // not connected
    if (info.getType() == ConnectivityManager.TYPE_WIFI)
        return "WIFI";
    if (info.getType() == ConnectivityManager.TYPE_MOBILE) {
        int networkType = info.getSubtype();
        switch (networkType) {
            case TelephonyManager.NETWORK_TYPE_GPRS:
            case TelephonyManager.NETWORK_TYPE_EDGE:
            case TelephonyManager.NETWORK_TYPE_CDMA:
            case TelephonyManager.NETWORK_TYPE_1xRTT:
            case TelephonyManager.NETWORK_TYPE_IDEN:     // api< 8: replace by 11
            case TelephonyManager.NETWORK_TYPE_GSM:      // api<25: replace by 16
                return "2G";
            case TelephonyManager.NETWORK_TYPE_UMTS:
            case TelephonyManager.NETWORK_TYPE_EVDO_0:
            case TelephonyManager.NETWORK_TYPE_EVDO_A:
            case TelephonyManager.NETWORK_TYPE_HSDPA:
            case TelephonyManager.NETWORK_TYPE_HSUPA:
            case TelephonyManager.NETWORK_TYPE_HSPA:
            case TelephonyManager.NETWORK_TYPE_EVDO_B:   // api< 9: replace by 12
            case TelephonyManager.NETWORK_TYPE_EHRPD:    // api<11: replace by 14
            case TelephonyManager.NETWORK_TYPE_HSPAP:    // api<13: replace by 15
            case TelephonyManager.NETWORK_TYPE_TD_SCDMA: // api<25: replace by 17
                return "3G";
            case TelephonyManager.NETWORK_TYPE_LTE:      // api<11: replace by 13
            case TelephonyManager.NETWORK_TYPE_IWLAN:    // api<25: replace by 18
            case 19: // LTE_CA
                return "4G";
            default:
                return "?";
        }
    }
    return "?";
}
}

use esto después de que la clase pase el contexto, obtendrá el estado de la red como tipo de red, red rápida, etc.


0

A continuación se muestran diferentes formas de hacerlo. Tenga en cuenta que hay muchos tipos de red en la clase ConnectivityManager. Además, si API> = 21, puede verificar los tipos de red en la clase NetworkCapabilities.

    ConnectivityMonitor connectivityMonitor = ConnectivityMonitor.getInstance(this);
    boolean isWiFiConnected = connectivityMonitor.isWifiConnection();
    boolean isMobileConnected = connectivityMonitor.isConnected(ConnectivityManager.TYPE_MOBILE);
    Log.e(TAG, "onCreate: isWiFiConnected " + isWiFiConnected);
    Log.e(TAG, "onCreate: isMobileConnected " + isMobileConnected);
    ConnectivityMonitor.Listener connectivityListener = new ConnectivityMonitor.Listener() {
        @Override
        public void onConnectivityChanged(boolean connected, @Nullable NetworkInfo networkInfo) {
            Log.e(TAG, "onConnectivityChanged: connected " + connected);
            Log.e(TAG, "onConnectivityChanged: networkInfo " + networkInfo);
            if (networkInfo != null) {
                boolean isWiFiConnected = networkInfo.getType() == NetworkCapabilities.TRANSPORT_WIFI;
                boolean isMobileConnected = networkInfo.getType() == NetworkCapabilities.TRANSPORT_CELLULAR;
                Log.e(TAG, "onConnectivityChanged: isWiFiConnected " + isWiFiConnected);
                Log.e(TAG, "onConnectivityChanged: isMobileConnected " + isMobileConnected);
            }
        }
    };
    connectivityMonitor.addListener(connectivityListener);
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