Why Smart Plugs don't require setting port forwarding on router and how to accomplish this with NodeMCU...












1















I have a NodeMCU (ESP8266) board that I use to control some devices over the internet. To be able to access it I have to enable port forwarding on my router and set the port manually like in the image below:



enter image description here



But with Smart Plugs (that use a cloud based app) I don't have to set up anything on my router. I am only required to type my Wi-Fi password. So my question is how Smart Plugs are accessed over the router (why they don't need manual port forwarding setting), and how to apply this to my NodeMCU so I don't have to set port forwarding manually.










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    1















    I have a NodeMCU (ESP8266) board that I use to control some devices over the internet. To be able to access it I have to enable port forwarding on my router and set the port manually like in the image below:



    enter image description here



    But with Smart Plugs (that use a cloud based app) I don't have to set up anything on my router. I am only required to type my Wi-Fi password. So my question is how Smart Plugs are accessed over the router (why they don't need manual port forwarding setting), and how to apply this to my NodeMCU so I don't have to set port forwarding manually.










    share|improve this question







    New contributor




    Slaven Tojic is a new contributor to this site. Take care in asking for clarification, commenting, and answering.
    Check out our Code of Conduct.























      1












      1








      1








      I have a NodeMCU (ESP8266) board that I use to control some devices over the internet. To be able to access it I have to enable port forwarding on my router and set the port manually like in the image below:



      enter image description here



      But with Smart Plugs (that use a cloud based app) I don't have to set up anything on my router. I am only required to type my Wi-Fi password. So my question is how Smart Plugs are accessed over the router (why they don't need manual port forwarding setting), and how to apply this to my NodeMCU so I don't have to set port forwarding manually.










      share|improve this question







      New contributor




      Slaven Tojic is a new contributor to this site. Take care in asking for clarification, commenting, and answering.
      Check out our Code of Conduct.












      I have a NodeMCU (ESP8266) board that I use to control some devices over the internet. To be able to access it I have to enable port forwarding on my router and set the port manually like in the image below:



      enter image description here



      But with Smart Plugs (that use a cloud based app) I don't have to set up anything on my router. I am only required to type my Wi-Fi password. So my question is how Smart Plugs are accessed over the router (why they don't need manual port forwarding setting), and how to apply this to my NodeMCU so I don't have to set port forwarding manually.







      nodemcu






      share|improve this question







      New contributor




      Slaven Tojic is a new contributor to this site. Take care in asking for clarification, commenting, and answering.
      Check out our Code of Conduct.











      share|improve this question







      New contributor




      Slaven Tojic is a new contributor to this site. Take care in asking for clarification, commenting, and answering.
      Check out our Code of Conduct.









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      Slaven Tojic is a new contributor to this site. Take care in asking for clarification, commenting, and answering.
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      asked 4 hours ago









      Slaven TojicSlaven Tojic

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      New contributor




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      New contributor





      Slaven Tojic is a new contributor to this site. Take care in asking for clarification, commenting, and answering.
      Check out our Code of Conduct.






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      Check out our Code of Conduct.






















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          Port forwarding is required to allow a device outside your router to access a device inside a router that performs NAT (Network Address Translation).



          When a NodeMCU is acting as a simple server to respond to requests, it is inside your network, and so the port-forwarding is required so that your phone or computer on the Outside can access it.



          However, for the cloud-based "smart" devices, it is different. The smart device opens a connection from itself to a server (the cloud) outside your network. In this case, the router understands that a new two-way connection is created between the cloud server and your smart device.



          The only communication to your smart device is from the cloud server to the smart device. If you have an app on your mobile device or computer, that app or website only accesses the cloud server, when then passes the instruction on to your smart device. Reverse direction for status info from the smart device to your app, etc.



          These smart devices rely on the infrastructure of their creators to continue to work. There are no LAN-to-LAN connections from the client to the device. Everything goes through the Internet to the remote cloud server, and back.



          Many home routers support a protocol called uPNP, that allows a device inside the network to request port forwarding to itself. Some routers require this to be explicitly enabled, because it's a security risk to allow any device to be able to open holes in your firewall/router.



          To have your NodeMCU device do this, look for libraries for ESP8266 that implement uPNP. I did a quick search and found https://github.com/ofekp/TinyUPnP though I cannot vouch for it's effectiveness or safety.






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          • Great answer, thanks for the quick response.

            – Slaven Tojic
            3 hours ago











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          1 Answer
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          1 Answer
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          active

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          active

          oldest

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          active

          oldest

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          3














          Port forwarding is required to allow a device outside your router to access a device inside a router that performs NAT (Network Address Translation).



          When a NodeMCU is acting as a simple server to respond to requests, it is inside your network, and so the port-forwarding is required so that your phone or computer on the Outside can access it.



          However, for the cloud-based "smart" devices, it is different. The smart device opens a connection from itself to a server (the cloud) outside your network. In this case, the router understands that a new two-way connection is created between the cloud server and your smart device.



          The only communication to your smart device is from the cloud server to the smart device. If you have an app on your mobile device or computer, that app or website only accesses the cloud server, when then passes the instruction on to your smart device. Reverse direction for status info from the smart device to your app, etc.



          These smart devices rely on the infrastructure of their creators to continue to work. There are no LAN-to-LAN connections from the client to the device. Everything goes through the Internet to the remote cloud server, and back.



          Many home routers support a protocol called uPNP, that allows a device inside the network to request port forwarding to itself. Some routers require this to be explicitly enabled, because it's a security risk to allow any device to be able to open holes in your firewall/router.



          To have your NodeMCU device do this, look for libraries for ESP8266 that implement uPNP. I did a quick search and found https://github.com/ofekp/TinyUPnP though I cannot vouch for it's effectiveness or safety.






          share|improve this answer
























          • Great answer, thanks for the quick response.

            – Slaven Tojic
            3 hours ago
















          3














          Port forwarding is required to allow a device outside your router to access a device inside a router that performs NAT (Network Address Translation).



          When a NodeMCU is acting as a simple server to respond to requests, it is inside your network, and so the port-forwarding is required so that your phone or computer on the Outside can access it.



          However, for the cloud-based "smart" devices, it is different. The smart device opens a connection from itself to a server (the cloud) outside your network. In this case, the router understands that a new two-way connection is created between the cloud server and your smart device.



          The only communication to your smart device is from the cloud server to the smart device. If you have an app on your mobile device or computer, that app or website only accesses the cloud server, when then passes the instruction on to your smart device. Reverse direction for status info from the smart device to your app, etc.



          These smart devices rely on the infrastructure of their creators to continue to work. There are no LAN-to-LAN connections from the client to the device. Everything goes through the Internet to the remote cloud server, and back.



          Many home routers support a protocol called uPNP, that allows a device inside the network to request port forwarding to itself. Some routers require this to be explicitly enabled, because it's a security risk to allow any device to be able to open holes in your firewall/router.



          To have your NodeMCU device do this, look for libraries for ESP8266 that implement uPNP. I did a quick search and found https://github.com/ofekp/TinyUPnP though I cannot vouch for it's effectiveness or safety.






          share|improve this answer
























          • Great answer, thanks for the quick response.

            – Slaven Tojic
            3 hours ago














          3












          3








          3







          Port forwarding is required to allow a device outside your router to access a device inside a router that performs NAT (Network Address Translation).



          When a NodeMCU is acting as a simple server to respond to requests, it is inside your network, and so the port-forwarding is required so that your phone or computer on the Outside can access it.



          However, for the cloud-based "smart" devices, it is different. The smart device opens a connection from itself to a server (the cloud) outside your network. In this case, the router understands that a new two-way connection is created between the cloud server and your smart device.



          The only communication to your smart device is from the cloud server to the smart device. If you have an app on your mobile device or computer, that app or website only accesses the cloud server, when then passes the instruction on to your smart device. Reverse direction for status info from the smart device to your app, etc.



          These smart devices rely on the infrastructure of their creators to continue to work. There are no LAN-to-LAN connections from the client to the device. Everything goes through the Internet to the remote cloud server, and back.



          Many home routers support a protocol called uPNP, that allows a device inside the network to request port forwarding to itself. Some routers require this to be explicitly enabled, because it's a security risk to allow any device to be able to open holes in your firewall/router.



          To have your NodeMCU device do this, look for libraries for ESP8266 that implement uPNP. I did a quick search and found https://github.com/ofekp/TinyUPnP though I cannot vouch for it's effectiveness or safety.






          share|improve this answer













          Port forwarding is required to allow a device outside your router to access a device inside a router that performs NAT (Network Address Translation).



          When a NodeMCU is acting as a simple server to respond to requests, it is inside your network, and so the port-forwarding is required so that your phone or computer on the Outside can access it.



          However, for the cloud-based "smart" devices, it is different. The smart device opens a connection from itself to a server (the cloud) outside your network. In this case, the router understands that a new two-way connection is created between the cloud server and your smart device.



          The only communication to your smart device is from the cloud server to the smart device. If you have an app on your mobile device or computer, that app or website only accesses the cloud server, when then passes the instruction on to your smart device. Reverse direction for status info from the smart device to your app, etc.



          These smart devices rely on the infrastructure of their creators to continue to work. There are no LAN-to-LAN connections from the client to the device. Everything goes through the Internet to the remote cloud server, and back.



          Many home routers support a protocol called uPNP, that allows a device inside the network to request port forwarding to itself. Some routers require this to be explicitly enabled, because it's a security risk to allow any device to be able to open holes in your firewall/router.



          To have your NodeMCU device do this, look for libraries for ESP8266 that implement uPNP. I did a quick search and found https://github.com/ofekp/TinyUPnP though I cannot vouch for it's effectiveness or safety.







          share|improve this answer












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          answered 3 hours ago









          jose can u cjose can u c

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          • Great answer, thanks for the quick response.

            – Slaven Tojic
            3 hours ago



















          • Great answer, thanks for the quick response.

            – Slaven Tojic
            3 hours ago

















          Great answer, thanks for the quick response.

          – Slaven Tojic
          3 hours ago





          Great answer, thanks for the quick response.

          – Slaven Tojic
          3 hours ago










          Slaven Tojic is a new contributor. Be nice, and check out our Code of Conduct.










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