This is a simple mbed client example demonstrating, registration of a device with mbed Device Connector and reading and writing values as well as deregistering on different Network Interfaces including Ethernet, WiFi, 6LoWPAN ND and Thread respectively.

Getting started with mbed Client on mbed OS

This is the mbed Client example for mbed OS. It demonstrates how to register a device with mbed Device Connector, how to read and write values, and how to deregister. If you are unfamiliar with mbed Device Connector, we recommend that you read the introduction to the data model first.

The application:

  • Connects to network with WiFi, Ethernet, 6LoWPAN ND or Thread connection.
  • Registers with mbed Device Connector.
  • Gives mbed Device Connector access to its resources (read and write).
  • Records the number of clicks on the device’s button and sends the number to mbed Device Connector.
  • Lets you control the blink pattern of the LED on the device (through mbed Device Connector).

Required hardware

  • K64F board.
  • 1-2 micro-USB cables.
  • mbed 6LoWPAN gateway router for 6LoWPAN ND and Thread.
  • mbed 6LoWPAN shield (AT86RF212B/AT86RF233 for 6LoWPAN ND and Thread.
  • Ethernet cable and connection to the internet.

Requirements for non K64F board

This example application is primarily designed for FRDM-K64F board but you can also use other mbed OS supported boards to run this example application , with some minor modifications for setup.

  • To get the application registering successfully on non K64F boards , you need Edit the mbed_app.json file to add NULL_ENTROPY feature for mbedTLS:

""macros": ["MBEDTLS_USER_CONFIG_FILE=\"mbedtls_mbed_client_config.h\"",
            "MBEDTLS_NO_DEFAULT_ENTROPY_SOURCES",
            "MBEDTLS_TEST_NULL_ENTROPY"],
  • On non K64F boards, there is no unregistration functionality and button press is simulated through timer ticks incrementing every 15 seconds.

Application setup

To configure the example application, please check following:

Connection type

The application uses Ethernet as the default connection type. To change the connection type, set one of them in mbed_app.json. For example, to enable 6LoWPAN ND mode:

    "network-interface": {
        "help": "options are ETHERNET,WIFI,MESH_LOWPAN_ND,MESH_THREAD.",
        "value": "MESH_LOWPAN_ND"
    }

Client credentials

To register the application to the Connector service, you need to create and set the client side certificate.

  • Go to mbed Device Connector and log in with your mbed account.
  • On mbed Device Connector, go to My Devices > Security credentials and click the Get my device security credentials button to get new credentials for your device.
  • Replace the contents in `security.h` of this project's directory with content copied above.

6LoWPAN ND and Thread settings

First you need to select the RF driver to be used by 6LoWPAN/Thread stack.

For example Atmel AT86RF233/212B driver is located in https://github.com/ARMmbed/atmel-rf-driver

To add that driver to you application , import library from following URL:

https://github.com/ARMmbed/atmel-rf-driver

Then you need to enable the IPV6 functionality as the 6LoWPAN and Thread are part of IPv6 stack. Edit the mbed_app.json file to add IPV6 feature:

"target.features_add": ["CLIENT", "IPV6", "COMMON_PAL"],

6LoWPAN ND and Thread use IPv6 for connectivity. Therefore, you need to verify first that you have a working IPv6 connection. To do that, ping the Connector IPv6 address 2607:f0d0:2601:52::20 from your network.

mbed gateway

To connect the example application in 6LoWPAN ND or Thread mode to Connector, you need to set up an mbed 6LoWPAN gateway router as follows:

  • Use an Ethernet cable to connect the mbed 6LoWPAN gateway router to the internet.
  • Use a micro-USB cable to connect the mbed 6LoWPAN gateway router to your computer. The computer will list the router as removable storage.
  • The firmware for the gateway is located in the `GW_Binary` folder in the root of this example. Select the binary matching your application bootstrap mode:
  • For the 6LoWPAN ND bootstrap, use `gateway6LoWPANDynamic.bin`.
  • For the Thread bootstrap, use `gatewayThreadDynamic.bin`.

The dynamic binaries use IPv6 autoconfiguration and enable the client to connect to the Connector service. The static binaries create a site-local IPv6 network and packets cannot be routed outside.

  • Copy the gateway binary file to the mbed 6LoWPAN gateway router to flash the device. The device reboots automatically after flashing. If that does not happen, press the Reset button on the board.

You can view debug traces from the gateway with a serial port monitor. The gateway uses baud rate 460800. The gateway IPv6 address is correctly configured when the following trace is visible: `Eth bootstrap ready, IP=XXXX:XXXX:XXXX:XXXX:XXXX:XXXX:XXXX:XXXX`.

Channel settings

The default 2.4GHz channel settings are already defined by the mbed-mesh-api to match the mbed gateway settings. The application can override these settings by adding them to the mbed_app.json file in the main project directory. For example:

    "target_overrides": {
        "*": {
            "mbed-mesh-api.6lowpan-nd-channel-page": 0,
            "mbed-mesh-api.6lowpan-nd-channel": 12,
            "mbed-mesh-api.thread-config-channel-page": 0,
            "mbed-mesh-api.thread-config-channel": 12
        }
    }

For sub-GHz shields (AT86RF212B) use the following overrides, 6LoWPAN ND only:

"mbed-mesh-api.6lowpan-nd-channel-page": 2,
"mbed-mesh-api.6lowpan-nd-channel": 1

For more information about the radio shields, see [the related documentation](docs/radio_module_identify.md). All the configurable settings can be found in the mbed-os-example-client/mbed-os/features/FEATURE_IPV6/mbed-mesh-api/mbed_lib.json file.

Thread-specific settings

With Thread, you can change the operating mode of the client from the default router mode to a sleepy end device by adding the following override to the `mbed_app.json` file:

    "mbed-mesh-api.thread-device-type": "MESH_DEVICE_TYPE_THREAD_SLEEPY_END_DEVICE"

Ethernet settings

For running the example application using Ethernet, you need:

  • An Ethernet cable.
  • An Ethernet connection to the internet.

Wi-Fi settings

The example application uses ESP8266 WiFi Interface for managing the wireless connectivity. To run this application using WiFi, you need:

    "network-interface": {
        "help": "options are ETHERNET,WIFI,MESH_LOWPAN_ND,MESH_THREAD.",
        "value": "WIFI"
    }

Provide your WiFi SSID and password here and leave `\"` in the beginning and end of your SSID and password (as shown in the example below). Otherwise, the example cannot pick up the SSID and password in correct format.

    "wifi-ssid": {
        "help": "WiFi SSID",
        "value": "\"SSID\""
    },
    "wifi-password": {
        "help": "WiFi Password",
        "value": "\"Password\""
    }

IP address setup

This example uses IPv4 to communicate with the mbed Device Connector Server except for 6LoWPAN ND and Thread. The example program should automatically get an IPv4 address from the router when connected over Ethernet.

If your network does not have DHCP enabled, you have to manually assign a static IP address to the board. We recommend having DHCP enabled to make everything run smoothly.

Changing socket type

Your device can connect to mbed Device Connector via UDP or TCP binding mode. The default is UDP. The binding mode cannot be changed in 6LoWPAN ND or Thread mode.

To change the binding mode:

  • In the `simpleclient.h` file, find the parameter `SOCKET_MODE`. The default is `M2MInterface::UDP`.
  • To switch to TCP, change it to `M2MInterface::TCP`.
  • Rebuild and flash the application.

Tip: The instructions in this document remain the same, irrespective of the socket mode you select.

Monitoring the application

The application prints debug messages over the serial port, so you can monitor its activity with a serial port monitor. The application uses baud rate 115200.

SerialPC

After connecting, you should see messages about connecting to mbed Device Connector:

In app_start()
IP address 10.2.15.222
Device name 6868df22-d353-4150-b90a-a878130859d9

When you click the `SW2` button on your board you should see messages about the value changes:

handle_button_click, new value of counter is 1

Testing the application

  • Flash the application.
  • Verify that the registration succeeded. You should see `Registered object successfully!` printed to the serial port.
  • On mbed Device Connector, go to My devices > Connected devices. Your device should be listed here.
  • Press the `SW2` button on the device a number of times (make a note of how many times you did that).
  • Go to Device Connector > API Console.
  • Enter https://api.connector.mbed.com/endpoints/DEVICE_NAME/3200/0/5501 in the URI field and click TEST API. Replace DEVICE_NAME with your actual endpoint name. The device name can be found in the security.h file, see variable MBED_ENDPOINT_NAME or it can be found from the traces.
  • The number of times you pressed SW2 is shown.
  • Press the SW3 button to unregister from mbed Device Connector. You should see Unregistered Object Successfully printed to the serial port and the LED starts blinking. This will also stop your application. Press the `RESET` button to run the program again.

For more methods check the mbed Device Connector Quick Start.

Application resources

The application exposes three resources:

  • 3200/0/5501. Number of presses of SW2 (GET).
  • 3201/0/5850. Blink function, blinks LED1 when executed (POST).
  • 3201/0/5853. Blink pattern, used by the blink function to determine how to blink. In the format of 1000:500:1000:500:1000:500 (PUT).

For information on how to get notifications when resource 1 changes, or how to use resources 2 and 3, take a look at the mbed Device Connector Quick Start.

Building this example

Building with mbed CLI

If you'd like to use mbed CLI to build this, then you should follow the instructions in the Handbook TODO - new link. The instructions here relate to using the developer.mbed.org Online Compiler

If you'd like to use the online Compiler, then you can Import this code into your compiler, select your platform from the top right, compile the code using the compile button, load it onto your board, press the reset button on the board and you code will run. See the client go online!

More instructions for using the mbed Online Compiler can be found at TODO - update this

Committer:
mbed_official
Date:
Fri Jan 12 09:00:06 2018 +0000
Revision:
126:630503b1047e
Parent:
124:fdc95f8d423d
Child:
129:d145697eb0de
Remove exclusion of TLS/Entropy

.
Commit copied from https://github.com/ARMmbed/mbed-os-example-client

Who changed what in which revision?

UserRevisionLine numberNew contents of line
mbed_official 112:6e06a534b348 1 # Getting started with Mbed Client on Mbed OS
Yogesh Pande 0:7d5ec759888b 2
mbed_official 123:6b11bfd9dcae 3 This is the Mbed Client example for Mbed OS. It demonstrates how to register a device with Mbed Device Connector, how to read and write values, and how to deregister. If you are unfamiliar with Mbed Device Connector, we recommend that you read [the introduction to the data model](https://cloud.mbed.com/docs/latest/legacy-products/mbed-device-connector-web-api.html#the-mbed-device-connector-data-model) first.
Yogesh Pande 0:7d5ec759888b 4
mbed_official 124:fdc95f8d423d 5 ## Table of Contents
mbed_official 124:fdc95f8d423d 6
mbed_official 124:fdc95f8d423d 7 1. [Required software](#required-software).
mbed_official 124:fdc95f8d423d 8 1. [Application setup](#application-setup).
mbed_official 124:fdc95f8d423d 9 1. [Ethernet](#ethernet).
mbed_official 124:fdc95f8d423d 10 1. [Mesh](#mesh).
mbed_official 124:fdc95f8d423d 11 1. [WiFi](#wifi).
mbed_official 124:fdc95f8d423d 12 1. [Building the example](#building-the-example).
mbed_official 124:fdc95f8d423d 13 1. [Monitoring the application](#monitoring-the-application).
mbed_official 124:fdc95f8d423d 14 1. [Testing the application](#testing-the-application).
mbed_official 124:fdc95f8d423d 15 1. [Known issues](#known-issues).
mbed_official 124:fdc95f8d423d 16 1. [Troubleshooting](#troubleshooting).
mbed_official 124:fdc95f8d423d 17
mbed_official 76:29e676124b6c 18 ## Required software
mbed_official 76:29e676124b6c 19
mbed_official 112:6e06a534b348 20 * [Arm Mbed account](https://os.mbed.com/account/login/?next=/).
mbed_official 123:6b11bfd9dcae 21 * [Mbed CLI](https://os.mbed.com/docs/latest/tools/arm-mbed-cli.html) - to build the example programs. To learn how to build Mbed OS applications with mbed-cli, see [the user guide](https://github.com/ARMmbed/mbed-cli/blob/master/README.md).
mbed_official 76:29e676124b6c 22 * [Serial port monitor](https://developer.mbed.org/handbook/SerialPC#host-interface-and-terminal-applications).
mbed_official 76:29e676124b6c 23
Yogesh Pande 0:7d5ec759888b 24 The application:
Yogesh Pande 0:7d5ec759888b 25
Yogesh Pande 0:7d5ec759888b 26 * Connects to network with WiFi, Ethernet, 6LoWPAN ND or Thread connection.
mbed_official 112:6e06a534b348 27 * Registers with Mbed Device Connector.
mbed_official 112:6e06a534b348 28 * Gives Mbed Device Connector access to its resources (read and write).
mbed_official 112:6e06a534b348 29 * Records the number of clicks on the device’s button and sends the number to Mbed Device Connector.
mbed_official 112:6e06a534b348 30 * Lets you control the blink pattern of the LED on the device (through Mbed Device Connector).
Yogesh Pande 0:7d5ec759888b 31
Yogesh Pande 0:7d5ec759888b 32 ## Application setup
Yogesh Pande 0:7d5ec759888b 33
mbed_official 21:b88cdeb5b302 34 To configure the example application:
Yogesh Pande 0:7d5ec759888b 35
mbed_official 76:29e676124b6c 36 1. [Select network and board](#select-network-and-board)
mbed_official 76:29e676124b6c 37 * [Ethernet](#ethernet)
mbed_official 76:29e676124b6c 38 * [Mesh (6LoWPAN and Thread)](#mesh)
mbed_official 76:29e676124b6c 39 * [WiFi](#wifi)
mbed_official 76:29e676124b6c 40 * [Non listed boards](#non-listed-board-support)
Yogesh Pande 0:7d5ec759888b 41 1. [Set the client credentials](#client-credentials).
Yogesh Pande 0:7d5ec759888b 42 1. [Set up an IP address](#ip-address-setup). This step is optional.
mbed_official 68:1a8e13b21e7e 43 1. [Change the socket type](#changing-the-socket-type). This step is optional.
Yogesh Pande 0:7d5ec759888b 44
mbed_official 76:29e676124b6c 45 ### Select network and board
mbed_official 76:29e676124b6c 46
mbed_official 76:29e676124b6c 47 This example supports following hardware-network combinations:
Yogesh Pande 0:7d5ec759888b 48
mbed_official 76:29e676124b6c 49 ### Ethernet
mbed_official 76:29e676124b6c 50
mbed_official 76:29e676124b6c 51 #### Supported boards
Yogesh Pande 0:7d5ec759888b 52
mbed_official 76:29e676124b6c 53 * K64F
mbed_official 76:29e676124b6c 54 * NUCLEO_F429ZI
mbed_official 76:29e676124b6c 55 * UBLOX_EVK_ODIN_W2 (use the supplied `configs/eth_v4.json`)
mbed_official 76:29e676124b6c 56
mbed_official 76:29e676124b6c 57 For running the example application using Ethernet, you need:
mbed_official 76:29e676124b6c 58
mbed_official 76:29e676124b6c 59 - An Ethernet cable.
mbed_official 76:29e676124b6c 60 - An Ethernet connection to the internet.
Yogesh Pande 0:7d5ec759888b 61
mbed_official 76:29e676124b6c 62 ### Mesh
mbed_official 76:29e676124b6c 63
mbed_official 77:e0618756b84e 64 There are example settings under the configs directory, which provide the easiest way to start with the applications.
mbed_official 77:e0618756b84e 65 The [mbed-mesh-api](https://github.com/ARMmbed/mbed-os/tree/master/features/nanostack/FEATURE_NANOSTACK/mbed-mesh-api/mbed_lib.json)
mbed_official 77:e0618756b84e 66 defines the defaults settings for applications. The most relevant parameters are described in more detail in the following sections.
mbed_official 77:e0618756b84e 67
mbed_official 76:29e676124b6c 68 #### Supported boards
Yogesh Pande 0:7d5ec759888b 69
mbed_official 76:29e676124b6c 70 * K64F + NXP MCR20 15.4 shield (mesh `NANOSTACK_FULL` mode)
mbed_official 112:6e06a534b348 71 * [NUCLEO_F429ZI](https://os.mbed.com/platforms/ST-Nucleo-F429ZI/) + [X-NUCLEO-IDS01A4](https://github.com/ARMmbed/stm-spirit1-rf-driver) Spirit1 6LoWPAN expansion board (mesh `LOWPAN_ROUTER` mode)
mbed_official 76:29e676124b6c 72 * NUCLEO_F429ZI + ATMEL AT233 15.4 shield (mesh `LOWPAN_ROUTER` mode)
mbed_official 76:29e676124b6c 73 * [Supported combinations of board and shields](#supported-combinations-of-board-and-shields)
Yogesh Pande 0:7d5ec759888b 74
mbed_official 76:29e676124b6c 75 First, you need to select the RF driver to be used by the 6LoWPAN/Thread stack.
mbed_official 76:29e676124b6c 76
mbed_official 76:29e676124b6c 77 This example supports these shields:
Yogesh Pande 0:7d5ec759888b 78
mbed_official 76:29e676124b6c 79 * [AT86RF233/212B](https://github.com/ARMmbed/atmel-rf-driver)
mbed_official 76:29e676124b6c 80 * [NXP-MCR20a](https://github.com/ARMmbed/mcr20a-rf-driver)
mbed_official 115:45399116b171 81 * [X-NUCLEO-IDS01A4](https://github.com/ARMmbed/stm-spirit1-rf-driver) (*a.k.a.* Spirit1) radio shields. Check instructions for compilation [here](#compile-configuration-for-spirit1).
Yogesh Pande 0:7d5ec759888b 82
mbed_official 76:29e676124b6c 83 To select the radio shield make sure that the `mbed_app.json` file points to the correct radio driver type:
Yogesh Pande 1:e06e899acba6 84
mbed_official 21:b88cdeb5b302 85 ```json
mbed_official 21:b88cdeb5b302 86 "mesh_radio_type": {
mbed_official 76:29e676124b6c 87 "help": "options are ATMEL, MCR20, SPIRIT1",
mbed_official 76:29e676124b6c 88 "value": "ATMEL"
mbed_official 21:b88cdeb5b302 89 },
mbed_official 21:b88cdeb5b302 90 ```
Yogesh Pande 1:e06e899acba6 91
mbed_official 21:b88cdeb5b302 92 Then you need to enable ARM IPv6/6LoWPAN stack. Edit the `mbed_app.json` file to add `NANOSTACK` feature with the particular configuration of the stack:
Yogesh Pande 1:e06e899acba6 93
Yogesh Pande 1:e06e899acba6 94 ```
mbed_official 123:6b11bfd9dcae 95 "target.features_add": ["NANOSTACK", "COMMON_PAL"],
mbed_official 123:6b11bfd9dcae 96 "nanostack.configuration": "lowpan_router",
mbed_official 21:b88cdeb5b302 97 ```
mbed_official 21:b88cdeb5b302 98
mbed_official 76:29e676124b6c 99 If your connection type is `MESH_THREAD` then you may want to use the `THREAD_ROUTER` configuration:
mbed_official 21:b88cdeb5b302 100
mbed_official 21:b88cdeb5b302 101 ```
mbed_official 123:6b11bfd9dcae 102 "target.features_add": ["NANOSTACK", "COMMON_PAL"],
mbed_official 123:6b11bfd9dcae 103 "nanostack.configuration": "thread_router",
Yogesh Pande 1:e06e899acba6 104 ```
Yogesh Pande 1:e06e899acba6 105
mbed_official 76:29e676124b6c 106 Since 6LoWPAN ND and Thread use IPv6 for connectivity, you need to verify first that you have a working IPv6 connection.
mbed_official 76:29e676124b6c 107 To do that, ping the Connector IPv6 address `2607:f0d0:2601:52::20` from your network.
Yogesh Pande 0:7d5ec759888b 108
mbed_official 76:29e676124b6c 109 #### Compile configuration for Spirit1
mbed_official 76:29e676124b6c 110
mbed_official 76:29e676124b6c 111 <span class="notes">**Note:** In case you want to use the STM Spirit1 Sub-1 GHz RF expansion board (X-NUCLEO-IDS01A4), you also need to configure its MAC address in the `mbed_app.json` file, for example:</span>
mbed_official 72:d0c254f237c4 112
mbed_official 72:d0c254f237c4 113 ```json
mbed_official 72:d0c254f237c4 114 "target_overrides": {
mbed_official 72:d0c254f237c4 115 "*": {
mbed_official 72:d0c254f237c4 116 "spirit1.mac-address": "{0x0, 0x1, 0x2, 0x3, 0x4, 0x5, 0x6, 0x7}"
mbed_official 72:d0c254f237c4 117 },
mbed_official 72:d0c254f237c4 118 }
mbed_official 72:d0c254f237c4 119 ```
mbed_official 72:d0c254f237c4 120
mbed_official 77:e0618756b84e 121 #### Channel settings
mbed_official 77:e0618756b84e 122
mbed_official 91:60ecc29f2ba1 123 The default 2.4GHz channel settings are already defined by the [mbed-mesh-api](https://github.com/ARMmbed/mbed-os/tree/master/features/nanostack/FEATURE_NANOSTACK/mbed-mesh-api) to match the Border Router settings. The application can override these settings by adding them to the `.json` file. For example:
mbed_official 77:e0618756b84e 124
mbed_official 77:e0618756b84e 125 ```json
mbed_official 77:e0618756b84e 126 "target_overrides": {
mbed_official 77:e0618756b84e 127 "*": {
mbed_official 77:e0618756b84e 128 "mbed-mesh-api.6lowpan-nd-channel-page": 0,
mbed_official 77:e0618756b84e 129 "mbed-mesh-api.6lowpan-nd-channel": 12,
mbed_official 77:e0618756b84e 130 "mbed-mesh-api.thread-config-channel-page": 0,
mbed_official 77:e0618756b84e 131 "mbed-mesh-api.thread-config-channel": 22
mbed_official 77:e0618756b84e 132 }
mbed_official 77:e0618756b84e 133 }
mbed_official 77:e0618756b84e 134 ```
mbed_official 77:e0618756b84e 135
mbed_official 77:e0618756b84e 136 For sub-GHz shields ([Spirit1](https://github.com/ARMmbed/stm-spirit1-rf-driver) or AT86RF212B) use the following overrides, **6LoWPAN ND only**:
mbed_official 77:e0618756b84e 137
mbed_official 77:e0618756b84e 138 ```json
mbed_official 77:e0618756b84e 139 "mbed-mesh-api.6lowpan-nd-channel-page": 2,
mbed_official 115:45399116b171 140 "mbed-mesh-api.6lowpan-nd-channel": 1,
mbed_official 115:45399116b171 141 "mbed-mesh-api.6lowpan-nd-channel-mask": "(1<<1)"
mbed_official 77:e0618756b84e 142 ```
mbed_official 77:e0618756b84e 143
mbed_official 77:e0618756b84e 144 For more information about the radio shields, see [the related documentation](docs/radio_module_identify.md).
mbed_official 77:e0618756b84e 145
mbed_official 76:29e676124b6c 146 #### Supported combinations of board and shields
mbed_official 76:29e676124b6c 147
mbed_official 76:29e676124b6c 148 See Mesh-minimal's [Notes on different hardware](https://github.com/ARMmbed/mbed-os-example-mesh-minimal/blob/master/Hardware.md) for known combinations of development boards and RF shields that have been tested with mesh networking stack.
mbed_official 76:29e676124b6c 149
mbed_official 70:23c95e43feb9 150 #### Border router
mbed_official 21:b88cdeb5b302 151
mbed_official 91:60ecc29f2ba1 152 You can configure and build the [nanostack-border-router](https://github.com/ARMmbed/nanostack-border-router) for the 6LoWPAN ND or Thread mode.
mbed_official 21:b88cdeb5b302 153
Yogesh Pande 0:7d5ec759888b 154 #### Thread-specific settings
Yogesh Pande 0:7d5ec759888b 155
Yogesh Pande 0:7d5ec759888b 156 With Thread, you can change the operating mode of the client from the default router mode to a sleepy end device by adding the following override to the `mbed_app.json` file:
Yogesh Pande 0:7d5ec759888b 157
Yogesh Pande 0:7d5ec759888b 158 ```json
Yogesh Pande 0:7d5ec759888b 159 "mbed-mesh-api.thread-device-type": "MESH_DEVICE_TYPE_THREAD_SLEEPY_END_DEVICE"
Yogesh Pande 0:7d5ec759888b 160 ```
mbed_official 123:6b11bfd9dcae 161 The corresponding Nanostack configuration option is:
mbed_official 123:6b11bfd9dcae 162 ```json
mbed_official 123:6b11bfd9dcae 163 "nanostack.configuration": "thread_end_device"
mbed_official 123:6b11bfd9dcae 164 ```
Yogesh Pande 0:7d5ec759888b 165
mbed_official 76:29e676124b6c 166 ## WiFi
Yogesh Pande 0:7d5ec759888b 167
mbed_official 76:29e676124b6c 168 #### Supported boards
Yogesh Pande 0:7d5ec759888b 169
mbed_official 76:29e676124b6c 170 * UBLOX_EVK_ODIN_W2. Check instructions for compilation [here](#compile-configuration-for-odin-wifi).
mbed_official 76:29e676124b6c 171 * K64F + GROVE SEEED shield using [ESP8266](https://en.wikipedia.org/wiki/ESP8266) WiFi module.
mbed_official 76:29e676124b6c 172 * NUCLEO_F429ZI + GROVE SEEED shield using [ESP8266](https://en.wikipedia.org/wiki/ESP8266) WiFi module.
mbed_official 126:630503b1047e 173 * [NUCLEO_L476RG](https://os.mbed.com/platforms/ST-Nucleo-L476RG/) + [X-NUCLEO-IDW0XX1](https://github.com/ARMmbed/wifi-x-nucleo-idw01m1/).
mbed_official 120:1f3dd60107dd 174 * [REALTEK_RTL8195AM](https://developer.mbed.org/platforms/REALTEK-RTL8195AM/) + in-built WiFi. Please update the [DAPLINK]((https://developer.mbed.org/platforms/REALTEK-RTL8195AM/#daplink-firmware-update).) 1st.
Yogesh Pande 0:7d5ec759888b 175
mbed_official 76:29e676124b6c 176 To run this application using ESP8266 WiFi Interface, you need:
Yogesh Pande 0:7d5ec759888b 177
mbed_official 21:b88cdeb5b302 178 1. An [ESP8266](https://en.wikipedia.org/wiki/ESP8266) WiFi module.
mbed_official 112:6e06a534b348 179 1. Updated [Espressif Firmware](https://os.mbed.com/teams/ESP8266/wiki/Firmware-Update).
mbed_official 112:6e06a534b348 180 1. Mount the WiFi module onto [K64F Grove Shield v2](https://os.mbed.com/platforms/FRDM-K64F/#supported-seeed-studio-grove-extension).
mbed_official 76:29e676124b6c 181 1. Attach the shield on your board.
mbed_official 76:29e676124b6c 182 1. In the `mbed_app.json` file, change:
mbed_official 21:b88cdeb5b302 183
Yogesh Pande 0:7d5ec759888b 184 ```json
Yogesh Pande 0:7d5ec759888b 185 "network-interface": {
mbed_official 120:1f3dd60107dd 186 "help": "options are ETHERNET, WIFI_ESP8266, WIFI_IDW0XX1, WIFI_ODIN, WIFI_RTW, MESH_LOWPAN_ND,MESH_THREAD.",
mbed_official 115:45399116b171 187 "value": "WIFI_ESP8266"
Yogesh Pande 0:7d5ec759888b 188 }
Yogesh Pande 0:7d5ec759888b 189 ```
Yogesh Pande 0:7d5ec759888b 190
Yogesh Pande 0:7d5ec759888b 191 Provide your WiFi SSID and password here and leave `\"` in the beginning and end of your SSID and password (as shown in the example below). Otherwise, the example cannot pick up the SSID and password in correct format.
mbed_official 21:b88cdeb5b302 192
Yogesh Pande 0:7d5ec759888b 193 ```json
Yogesh Pande 0:7d5ec759888b 194 "wifi-ssid": {
Yogesh Pande 0:7d5ec759888b 195 "help": "WiFi SSID",
Yogesh Pande 0:7d5ec759888b 196 "value": "\"SSID\""
Yogesh Pande 0:7d5ec759888b 197 },
Yogesh Pande 0:7d5ec759888b 198 "wifi-password": {
Yogesh Pande 0:7d5ec759888b 199 "help": "WiFi Password",
Yogesh Pande 0:7d5ec759888b 200 "value": "\"Password\""
Yogesh Pande 0:7d5ec759888b 201 }
Yogesh Pande 0:7d5ec759888b 202 ```
Yogesh Pande 0:7d5ec759888b 203
mbed_official 76:29e676124b6c 204 <span class="notes">**Note:** Some devices do not support the Grove Shield or use the primary UART for USB communication. On such devices, modify the `mbed_app.json` to use the serial pins connected to the ESP8266.</span>
mbed_official 13:c44e318674db 205
mbed_official 126:630503b1047e 206 For example, NUCLEO_L476RG requires a different serial connection:
mbed_official 13:c44e318674db 207
mbed_official 13:c44e318674db 208 ```json
mbed_official 13:c44e318674db 209 "wifi-tx": {
mbed_official 13:c44e318674db 210 "help": "TX pin for serial connection to external device",
mbed_official 13:c44e318674db 211 "value": "PA_11"
mbed_official 13:c44e318674db 212 },
mbed_official 13:c44e318674db 213 "wifi-rx": {
mbed_official 13:c44e318674db 214 "help": "RX pin for serial connection to external device",
mbed_official 13:c44e318674db 215 "value": "PA_12"
mbed_official 13:c44e318674db 216 }
mbed_official 13:c44e318674db 217 ```
mbed_official 13:c44e318674db 218
mbed_official 76:29e676124b6c 219 #### Compile configuration for ODIN WiFi
mbed_official 76:29e676124b6c 220
mbed_official 115:45399116b171 221 To compile ODIN WiFi configuration, you need to tell mbed NOT to compile mesh files for example. To do that, set up a `.mbedignore` file. An example file is available in the `configs` folder.
mbed_official 76:29e676124b6c 222
mbed_official 76:29e676124b6c 223 This should resolve the issue:
mbed_official 76:29e676124b6c 224
mbed_official 115:45399116b171 225 ``` bash
mbed_official 115:45399116b171 226 cp configs/wifi_odin_v4.json mbed_app.json
mbed_official 115:45399116b171 227 <use your favourite editor to modify mbed_app.json for WiFi details>
mbed_official 115:45399116b171 228 cp configs/mesh-mbedignore ./.mbedignore
mbed_official 115:45399116b171 229 ```
mbed_official 115:45399116b171 230
mbed_official 115:45399116b171 231 #### Compile configuration for STM `X-NUCLEO-IDW0XX1` WiFi expansion boards
mbed_official 115:45399116b171 232
mbed_official 115:45399116b171 233 Currently, two STM WiFi expansion boards are available:
mbed_official 115:45399116b171 234 - `X-NUCLEO-IDW01M1`, which is the Morpho form-factor board, and
mbed_official 115:45399116b171 235 - `X-NUCLEO-IDW04A1`, which is the Arduino form-factor board.
mbed_official 115:45399116b171 236
mbed_official 115:45399116b171 237 The label is clearly printed on the PCB.
mbed_official 115:45399116b171 238
mbed_official 115:45399116b171 239 To compile STM X-NUCLEO WiFi configuration, you need to tell mbed NOT to compile mesh files for example. To do that, set up a `.mbedignore` file. Example files are available in the `configs` folder.
mbed_official 115:45399116b171 240
mbed_official 115:45399116b171 241 This should resolve the issue (example for `X-NUCLEO-IDW01M1`):
mbed_official 115:45399116b171 242
mbed_official 115:45399116b171 243 ``` bash
mbed_official 115:45399116b171 244 cp configs/wifi_idw01m1_v4.json mbed_app.json
mbed_official 115:45399116b171 245 <use your favourite editor to modify mbed_app.json for WiFi details>
mbed_official 115:45399116b171 246 cp configs/mesh-mbedignore ./.mbedignore
mbed_official 115:45399116b171 247 ```
mbed_official 115:45399116b171 248
mbed_official 115:45399116b171 249 If you have issues with the `X-NUCLEO-IDW04A1` board, please double-check that macro `IDW04A1_WIFI_HW_BUG_WA` has been added to the `macros` section of the `mbed_app.json` file.
mbed_official 115:45399116b171 250
mbed_official 120:1f3dd60107dd 251 #### Compile configuration for REALTEK_RTL8195AM (aka Realtek Ameba) board
mbed_official 120:1f3dd60107dd 252
mbed_official 120:1f3dd60107dd 253 Use the supplied `configs/wifi_rtw_v4.json` file as the basis.
mbed_official 120:1f3dd60107dd 254
mbed_official 120:1f3dd60107dd 255 ``` bash
mbed_official 120:1f3dd60107dd 256 cp configs/wifi_rtw_v4.json mbed_app.json
mbed_official 120:1f3dd60107dd 257 <use your favourite editor to modify mbed_app.json for WiFi SSID/Password>
mbed_official 120:1f3dd60107dd 258 mbed compile -m REALTEK_RTL8195AM -t <TOOLCHAIN>
mbed_official 120:1f3dd60107dd 259 ```
mbed_official 120:1f3dd60107dd 260
mbed_official 76:29e676124b6c 261 ### Non listed board support
mbed_official 76:29e676124b6c 262
mbed_official 112:6e06a534b348 263 Apart from the listed configurations, this example can work on other Mbed OS supported hardware boards which support any of the given network interface including Ethernet, WiFi, Mesh (6LoWPAN) or Thread, provided the configuration fulfills condition that the target hardware has TLS entropy implemented for it. On devices where hardware entropy is not present, TLS is disabled by default. This would result in compile time failures or linking failures.
mbed_official 76:29e676124b6c 264
mbed_official 76:29e676124b6c 265 To learn why entropy is required, read the [TLS Porting guide](https://docs.mbed.com/docs/mbed-os-handbook/en/5.2/advanced/tls_porting/).
mbed_official 76:29e676124b6c 266
mbed_official 112:6e06a534b348 267 Also, the complete example configuration of Mbed Client, the selected network interface and Mbed OS components must fit into hardware's given memory size (Flash size and RAM size).
mbed_official 76:29e676124b6c 268
mbed_official 76:29e676124b6c 269 <span class="notes">**Note:** On non-K64F boards, there is no unregistration functionality and button presses are simulated through timer ticks incrementing every 15 seconds.</span>
mbed_official 76:29e676124b6c 270
mbed_official 76:29e676124b6c 271 <span class="notes">**Note:** To see how different targets are built please see the supplied `build_all.sh script`.</span>
mbed_official 76:29e676124b6c 272
mbed_official 76:29e676124b6c 273
mbed_official 76:29e676124b6c 274 ### Client credentials
mbed_official 76:29e676124b6c 275
mbed_official 112:6e06a534b348 276 To register the application with the Mbed Device Connector service, you need to create and set the client side certificate.
mbed_official 76:29e676124b6c 277
mbed_official 112:6e06a534b348 278 1. Go to [Mbed Device Connector](https://connector.mbed.com) and log in with your Mbed account.
mbed_official 112:6e06a534b348 279 1. On Mbed Device Connector, go to [My Devices > Security credentials](https://connector.mbed.com/#credentials) and click the **Get my device security credentials** to get new credentials for your device.
mbed_official 76:29e676124b6c 280 1. Replace the contents in the `security.h` file of this project's folder with the content copied above.
mbed_official 76:29e676124b6c 281
Yogesh Pande 0:7d5ec759888b 282 ### IP address setup
Yogesh Pande 0:7d5ec759888b 283
mbed_official 112:6e06a534b348 284 This example uses IPv4 to communicate with the [Mbed Device Connector Server](https://api.connector.mbed.com) except for 6LoWPAN ND and Thread. However, you can easily change it to IPv6 by changing the `mbed_app.json` you make:
mbed_official 76:29e676124b6c 285
mbed_official 45:b150e0aa009c 286 ```
mbed_official 45:b150e0aa009c 287 "target_overrides": {
mbed_official 45:b150e0aa009c 288 "*": {
mbed_official 45:b150e0aa009c 289 "target.features_add": ["LWIP", "NANOSTACK", "COMMON_PAL"],
mbed_official 45:b150e0aa009c 290 "lwip.ipv4-enabled": false,
mbed_official 45:b150e0aa009c 291 "lwip.ipv6-enabled": true,
mbed_official 45:b150e0aa009c 292 "mbed-trace.enable": 0
mbed_official 45:b150e0aa009c 293 }
mbed_official 45:b150e0aa009c 294 ```
mbed_official 76:29e676124b6c 295
mbed_official 68:1a8e13b21e7e 296 by modifying the `ipv4-enabled` or `ipv6-enabled` to `true/false`. Only one should be true.
mbed_official 45:b150e0aa009c 297
mbed_official 45:b150e0aa009c 298 The example program should automatically get an IP address from the router when connected over Ethernet or WiFi.
Yogesh Pande 0:7d5ec759888b 299
Yogesh Pande 0:7d5ec759888b 300 If your network does not have DHCP enabled, you have to manually assign a static IP address to the board. We recommend having DHCP enabled to make everything run smoothly.
Yogesh Pande 0:7d5ec759888b 301
mbed_official 68:1a8e13b21e7e 302 ### Changing the socket type
Yogesh Pande 0:7d5ec759888b 303
mbed_official 112:6e06a534b348 304 Your device can connect to Mbed Device Connector via UDP or TCP binding mode. The default and only allowed value is UDP for Thread and 6LoWPAN. TCP is the default for other connections. The binding mode cannot be changed in 6LoWPAN ND or Thread mode.
Yogesh Pande 0:7d5ec759888b 305
Yogesh Pande 0:7d5ec759888b 306 To change the binding mode:
Yogesh Pande 0:7d5ec759888b 307
mbed_official 45:b150e0aa009c 308 1. In the `simpleclient.h` file, find the parameter `SOCKET_MODE`. The default is `M2MInterface::UDP` for mesh and `M2MInterface::TCP` for others.
mbed_official 37:9a9428fc4b26 309 1. To switch to UDP, change it to `M2MInterface::UDP`.
Yogesh Pande 0:7d5ec759888b 310 1. Rebuild and flash the application.
Yogesh Pande 0:7d5ec759888b 311
Yogesh Pande 0:7d5ec759888b 312 <span class="tips">**Tip:** The instructions in this document remain the same, irrespective of the socket mode you select.</span>
Yogesh Pande 0:7d5ec759888b 313
mbed_official 45:b150e0aa009c 314 Possible socket types per connection:
mbed_official 45:b150e0aa009c 315
mbed_official 45:b150e0aa009c 316 | Network interface | UDP | TCP |
mbed_official 45:b150e0aa009c 317 | ------------------------------|:-----:|:-----:|
mbed_official 45:b150e0aa009c 318 | Ethernet (IPv4) | X | X |
mbed_official 45:b150e0aa009c 319 | Ethernet (IPv6) | X | |
mbed_official 45:b150e0aa009c 320 | Wifi (IPv4) | X | X |
mbed_official 45:b150e0aa009c 321 | Wifi (IPv6) - Not supported | | |
mbed_official 45:b150e0aa009c 322 | 6LoWPAN/Thread (IPv6) | X | |
mbed_official 45:b150e0aa009c 323
Yogesh Pande 0:7d5ec759888b 324 ## Building the example
Yogesh Pande 0:7d5ec759888b 325
mbed_official 112:6e06a534b348 326 To build the example using Mbed CLI:
Yogesh Pande 0:7d5ec759888b 327
Yogesh Pande 0:7d5ec759888b 328 1. Open a command line tool and navigate to the project’s directory.
mbed_official 21:b88cdeb5b302 329
mbed_official 21:b88cdeb5b302 330 2. Import this example:
mbed_official 21:b88cdeb5b302 331
mbed_official 21:b88cdeb5b302 332 ```
mbed_official 21:b88cdeb5b302 333 mbed import mbed-os-example-client
mbed_official 21:b88cdeb5b302 334 ```
mbed_official 21:b88cdeb5b302 335
mbed_official 72:d0c254f237c4 336 3. To build the application, select the hardware board and build the toolchain using the command:
mbed_official 21:b88cdeb5b302 337
mbed_official 83:a8ec73b59031 338 (Specify the config file in the build command, for example for 6LoWPAN)
mbed_official 70:23c95e43feb9 339
mbed_official 72:d0c254f237c4 340 ```
mbed_official 70:23c95e43feb9 341 mbed compile -m K64F -t GCC_ARM -c --app-config configs/6lowpan_Atmel_RF.json
mbed_official 21:b88cdeb5b302 342 ```
mbed_official 83:a8ec73b59031 343
mbed_official 83:a8ec73b59031 344 If you are using either of the following configurations remember to copy .mbedignore as well:
mbed_official 83:a8ec73b59031 345
mbed_official 87:5092f48bb68c 346 ```
mbed_official 83:a8ec73b59031 347 configs/eth_*
mbed_official 83:a8ec73b59031 348 configs/wifi_*
mbed_official 87:5092f48bb68c 349 ```
mbed_official 83:a8ec73b59031 350
mbed_official 87:5092f48bb68c 351 ```
mbed_official 83:a8ec73b59031 352 cp configs/eth-wifi-mbedignore ./.mbedignore
mbed_official 83:a8ec73b59031 353 ```
mbed_official 83:a8ec73b59031 354
mbed_official 21:b88cdeb5b302 355 mbed CLI builds a binary file under the project’s `BUILD/` directory.
Yogesh Pande 0:7d5ec759888b 356
mbed_official 72:d0c254f237c4 357 4. Plug the Ethernet cable into the board if you are using Ethernet mode.
mbed_official 21:b88cdeb5b302 358
mbed_official 106:32aa8e01992d 359 5. If you are using 6LoWPAN ND or Thread mode, connect and power on the Border Router first.
mbed_official 21:b88cdeb5b302 360
mbed_official 72:d0c254f237c4 361 6. Plug the micro-USB cable into the **OpenSDA** port. The board is listed as a mass-storage device.
mbed_official 21:b88cdeb5b302 362
mbed_official 72:d0c254f237c4 363 7. Drag the binary `BUILD/K64F/GCC_ARM/mbed-os-example-client.bin` to the board to flash the application.
mbed_official 21:b88cdeb5b302 364
mbed_official 72:d0c254f237c4 365 8. The board is automatically programmed with the new binary. A flashing LED on it indicates that it is still working. When the LED stops blinking, the board is ready to work.
mbed_official 21:b88cdeb5b302 366
mbed_official 72:d0c254f237c4 367 9. Press the **Reset** button on the board to run the program.
mbed_official 21:b88cdeb5b302 368
mbed_official 72:d0c254f237c4 369 10. For verification, continue to the [Monitoring the application](#monitoring-the-application) chapter.
mbed_official 21:b88cdeb5b302 370
mbed_official 21:b88cdeb5b302 371 **To build the example using the Online IDE:**
mbed_official 21:b88cdeb5b302 372
mbed_official 21:b88cdeb5b302 373 Import this repository in the Online IDE and continue from step 3 onwards.
Yogesh Pande 0:7d5ec759888b 374
Yogesh Pande 0:7d5ec759888b 375 ## Monitoring the application
Yogesh Pande 0:7d5ec759888b 376
Yogesh Pande 0:7d5ec759888b 377 The application prints debug messages over the serial port, so you can monitor its activity with a serial port monitor. The application uses baud rate 115200.
Yogesh Pande 0:7d5ec759888b 378
mbed_official 112:6e06a534b348 379 <span class="notes">**Note:** Instructions to set this up are located [here](https://os.mbed.com/handbook/SerialPC#host-interface-and-terminal-applications).</span>
Yogesh Pande 0:7d5ec759888b 380
mbed_official 112:6e06a534b348 381 After connecting, you should see messages about connecting to Mbed Device Connector:
Yogesh Pande 0:7d5ec759888b 382
Yogesh Pande 0:7d5ec759888b 383 ```
mbed_official 87:5092f48bb68c 384 Starting mbed Client example
mbed_official 87:5092f48bb68c 385 [EasyConnect] IPv4 mode
mbed_official 63:c73f78fd7982 386 [EasyConnect] Using Ethernet
mbed_official 63:c73f78fd7982 387 [EasyConnect] Connected to Network successfully
mbed_official 63:c73f78fd7982 388 [EasyConnect] IP address 192.168.8.110
mbed_official 63:c73f78fd7982 389 [EasyConnect] MAC address 5c:cf:7f:86:de:bf
mbed_official 5:b7d7ca715fdb 390
mbed_official 63:c73f78fd7982 391 SOCKET_MODE : TCP
mbed_official 5:b7d7ca715fdb 392
mbed_official 5:b7d7ca715fdb 393 Connecting to coap://api.connector.mbed.com:5684
mbed_official 5:b7d7ca715fdb 394
mbed_official 63:c73f78fd7982 395 Registered object succesfully!
Yogesh Pande 0:7d5ec759888b 396 ```
Yogesh Pande 0:7d5ec759888b 397
mbed_official 21:b88cdeb5b302 398 <span class="notes">**Note:** Device name is the endpoint name you will need later on when [testing the application](https://github.com/ARMmbed/mbed-os-example-client#testing-the-application).</span>
Yogesh Pande 0:7d5ec759888b 399
mbed_official 21:b88cdeb5b302 400 When you press the **SW2** button on your board you should see messages about the value changes:
Yogesh Pande 0:7d5ec759888b 401
Yogesh Pande 0:7d5ec759888b 402 ```
Yogesh Pande 0:7d5ec759888b 403 handle_button_click, new value of counter is 1
Yogesh Pande 0:7d5ec759888b 404 ```
Yogesh Pande 0:7d5ec759888b 405
Yogesh Pande 0:7d5ec759888b 406 ## Testing the application
Yogesh Pande 0:7d5ec759888b 407
Yogesh Pande 0:7d5ec759888b 408 1. Flash the application.
mbed_official 21:b88cdeb5b302 409 2. Verify that the registration succeeded. You should see `Registered object successfully!` printed to the serial port.
mbed_official 112:6e06a534b348 410 3. On Mbed Device Connector, go to [My devices > Connected devices](https://connector.mbed.com/#endpoints). Your device should be listed here.
mbed_official 21:b88cdeb5b302 411 4. Press the **SW2** button on the device a number of times (make a note of how many times you did that).
mbed_official 21:b88cdeb5b302 412 5. Go to [Device Connector > API Console](https://connector.mbed.com/#console).
mbed_official 21:b88cdeb5b302 413 6. Click the **Endpoint directory lookups** drop down menu.
mbed_official 76:29e676124b6c 414 ![](/docs/img/ep_lookup.PNG)
mbed_official 76:29e676124b6c 415 7. In the menu, click **GET** next to **Endpoint's resource representation**. Select your _endpoint_ and _resource-path_. For example, the _endpoint_ is the identifier of your endpoint that can be found in the `security.h` file as `MBED_ENDPOINT_NAME`. Select `3200/0/5501`as a resource path and click **TEST API**.
mbed_official 21:b88cdeb5b302 416 8. The number of times you pressed **SW2** is shown.
mbed_official 112:6e06a534b348 417 9. Press the **SW3** button to unregister from Mbed Device Connector. You should see `Unregistered Object Successfully` printed to the serial port and the LED starts blinking. This will also stop your application. Press the **Reset** button to run the program again.
Yogesh Pande 0:7d5ec759888b 418
mbed_official 21:b88cdeb5b302 419 <span class="notes">**Note:** On non-K64F boards, there is no unregistration functionality and button presses are simulated through timer ticks incrementing every 15 seconds.</span>
Yogesh Pande 0:7d5ec759888b 420
Yogesh Pande 0:7d5ec759888b 421 ![SW2 pressed five times, as shown by the API Console](clicks.png)
Yogesh Pande 0:7d5ec759888b 422
Yogesh Pande 0:7d5ec759888b 423 <span class="tips">**Tip:** If you get an error, for example `Server Response: 410 (Gone)`, clear your browser's cache, log out, and log back in.</span>
Yogesh Pande 0:7d5ec759888b 424
mbed_official 21:b88cdeb5b302 425 <span class="notes">**Note:** Only GET methods can be executed through [Device Connector > API Console](https://connector.mbed.com/#console). For other methods, check the [mbed Device Connector Quick Start](https://github.com/ARMmbed/mbed-connector-api-node-quickstart).
Yogesh Pande 0:7d5ec759888b 426
Yogesh Pande 0:7d5ec759888b 427 ### Application resources
Yogesh Pande 0:7d5ec759888b 428
Yogesh Pande 0:7d5ec759888b 429 The application exposes three [resources](https://docs.mbed.com/docs/mbed-device-connector-web-interfaces/en/latest/#the-mbed-device-connector-data-model):
Yogesh Pande 0:7d5ec759888b 430
mbed_official 21:b88cdeb5b302 431 1. `3200/0/5501`. Number of presses of **SW2** (GET).
mbed_official 21:b88cdeb5b302 432 2. `3201/0/5850`. Blink function, blinks **LED1** when executed (POST).
Yogesh Pande 0:7d5ec759888b 433 3. `3201/0/5853`. Blink pattern, used by the blink function to determine how to blink. In the format of `1000:500:1000:500:1000:500` (PUT).
Yogesh Pande 0:7d5ec759888b 434
mbed_official 112:6e06a534b348 435 To learn how to get notifications when resource 1 changes, or how to use resources 2 and 3, read the [Mbed Device Connector Quick Start](https://github.com/ARMmbed/mbed-connector-api-node-quickstart).
mbed_official 52:957eff5f0ee9 436
mbed_official 69:64f9214729ae 437 ## Known issues
mbed_official 69:64f9214729ae 438
mbed_official 120:1f3dd60107dd 439 1. Mutex issue using debug profile, issue #[303](https://github.com/ARMmbed/mbed-os-example-client/issues/303).
mbed_official 124:fdc95f8d423d 440 1. UDP connection fails with on-line compiler (ARM CC 5.06 update 3) #[357](https://github.com/ARMmbed/mbed-os-example-client/issues/357).
mbed_official 124:fdc95f8d423d 441
mbed_official 124:fdc95f8d423d 442 As ARM Compiler 5.06 update *3* has multiple compiler bugs (issue 2 above), we recommend updating to [5.06 update 6](https://developer.arm.com/products/software-development-tools/compilers/arm-compiler/downloads/version-5).
mbed_official 120:1f3dd60107dd 443
mbed_official 120:1f3dd60107dd 444 ### REALTEK_RTL8195AM
mbed_official 120:1f3dd60107dd 445
mbed_official 120:1f3dd60107dd 446 Realtek RTL8195AM board does not have any LEDs that would be connected to the main MCU. The existing LEDs are all connected to the DAPLINK host processor. So, in order to get the LEDs working one has to connect an external LED, instead. The LED needs to be connected to GPIOB_4 and GND, please see pinout in [Realtek RTL8195AM-page](https://os.mbed.com/platforms/Realtek-RTL8195AM/#rtl8195am-pinout-right).
mbed_official 120:1f3dd60107dd 447
mbed_official 120:1f3dd60107dd 448 The board does not have any buttons connected to the main MCU either, so that is why the button is mapped to `NC` (Not Connected) in the `wifi_rtw_v4.json`.
mbed_official 69:64f9214729ae 449
mbed_official 120:1f3dd60107dd 450 Secondly, at least for now, this board is not fully without issues. The following issues have been raised in Mbed OS repository - please follow those for fixes.
mbed_official 74:2a6c17db52ea 451
mbed_official 120:1f3dd60107dd 452 1. ISR overflow issues with this example - Mbed OS #[5640](https://github.com/ARMmbed/mbed-os/issues/5640).
mbed_official 120:1f3dd60107dd 453 1. Compilation issues with on-line compiler - Mbed OS #[5626](https://github.com/ARMmbed/mbed-os/issues/5626).
mbed_official 120:1f3dd60107dd 454 1. Stability issues - Mbed OS #[5056](https://github.com/ARMmbed/mbed-os/issues/5056).
mbed_official 120:1f3dd60107dd 455 1. UVision support not complete - Mbed OS #[4651](https://github.com/ARMmbed/mbed-os/issues/4651).
mbed_official 120:1f3dd60107dd 456 1. DAPLINK in REALTEK-RTL8195AM is a bit old - Mbed OS #[5643](https://github.com/ARMmbed/mbed-os/issues/5643).
mbed_official 120:1f3dd60107dd 457
mbed_official 120:1f3dd60107dd 458 All of these issues are being worked on and fixes will come in, so please follow-up the related items.
mbed_official 123:6b11bfd9dcae 459
mbed_official 123:6b11bfd9dcae 460 ## Troubleshooting
mbed_official 123:6b11bfd9dcae 461
mbed_official 123:6b11bfd9dcae 462 If you have problems, you can review the [documentation](https://os.mbed.com/docs/latest/tutorials/debugging.html) for suggestions on what could be wrong and how to fix it.