Heart Rate Monitor example for the BLE API using nRF51822 native mode drivers

Dependencies:   BLE_API mbed nRF51822 X_NUCLEO_IDB0XA1

BLE_HeartRate implements the Heart Rate Service which enables a collector device (such as a smart phone) to connect and interact with a Heart Rate Sensor.

For the sake of simplicity and portability, the sensor in this case has been abstracted using a counter which counts up to a threshold and then recycles. The code can be easily extended to use the real heart rate sensor.

Apps on the collector device may expect auxiliary services to supplement the HRService. We've therefore also included the Device Information Service and the Battery Service.

BLE_API offers the building blocks to compose the needed GATT services out of Characteristics and Attributes, but that can be cumbersome. As a shortcut, it is possible to simply instantiate reference services offered by BLE_API, and we'll be taking that easier route. The user is encouraged to peek under the hood of these 'services' and be aware of the underlying mechanics. It is not necessary to use these ready-made services.

Like most non-trivial services, the heart-rate service is connection oriented. In the default state, the application configures the Bluetooth stack to advertise its presence and indicate connectability. A Central/Master device is expected to scan for advertisements from peripherals in the vicinity and then initiate a connection. Once connected, the peripheral stops advertising, and communicates periodically as a server using the Attribute Protocol.

Walkthrough of the code

Let's see how this magic is achieved. We'll be pulling out excerpts from main.cpp where most of the code resides.

You'll find that the entire system is event driven, with a single main thread idling most of its time in a while loop and being interrupted by events. An important startup activity for the application is to setup the event callback handlers appropriately.

The first thing to notice is the BLEDevice class, which encapsulates the Bluetooth low energy protocol stack.

BLEDevice

#include "BLEDevice.h"

BLEDevice  ble;

void disconnectionCallback(Gap::Handle_t handle, Gap::DisconnectionReason_t reason)
{
    ble.startAdvertising(); // restart advertising
}

int main(void)
{
    ble.init();
    ble.onDisconnection(disconnectionCallback);
 ...
    ble.startAdvertising();

    while (true) {
...
            ble.waitForEvent();
...
    }
}

There is an init() method that must be called before using the BLEDevice object. The startAdvertising() method is called to advertise the device's presence allowing other devices to connect to it.

onDisconnect() is a typical example of setting up of an event handler. With onDisconnect(), a callback function is setup to restart advertising when the connection is terminated.

The waitForEvent() method should be called whenever the main thread is 'done' doing any work; it hands the control over to the protocol and lets you save power. So when will waitForEvent() return? Basically whenever you have an application interrupt, and most typically that results in some event callback being invoked. In this example there is a Ticker object that is setup to call a function every second. Whenever the ticker 'ticks' the periodicCallback() is invoked, and then waitForEvent() returns, resuming the execution in main.

Interrupt to trigger periodic actions

void periodicCallback(void)
{
    led1 = !led1; /* Do blinky on LED1 while we're waiting for BLE events */

    /* Note that the periodicCallback() executes in interrupt context, so it is safer to do
     * heavy-weight sensor polling from the main thread. */
    triggerSensorPolling = true;
}

int main(void)
{
    led1 = 1;
    Ticker ticker;
    ticker.attach(periodicCallback, 1);
...

It is worth emphasizing that the periodicCallback() (or any other event handler) is called in interrupt context; and should not engage in any heavy-weight tasks to avoid the system from becoming unresponsive. A typical workaround is to mark some activity as pending to be handled in the main thread; as done through 'triggerSensorPolling'.

BLEDevice offers APIs to setup GAP (for connectability) and GATT (for services). As has been mentioned already, GATT services may be composed by defining Characteristics and Attributes separately (which is cumbersome), or in some cases by simply instantiating reference services offered by BLE_API. The following illustrates how straightforward this can be. You are encouraged to peek under the hood of these implementations and study the mechanics.

Service setup

    /* Setup primary service. */
    uint8_t hrmCounter = 100;
    HeartRateService hrService(ble, hrmCounter, HeartRateService::LOCATION_FINGER);

    /* Setup auxiliary services. */
    BatteryService           battery(ble);
    DeviceInformationService deviceInfo(ble, "ARM", "Model1", "SN1", "hw-rev1", "fw-rev1", "soft-rev1");

Setting up GAP mostly has to do with configuring connectability and the payload contained in the advertisement packets.

Advertiser setup

    ble.accumulateAdvertisingPayload(GapAdvertisingData::BREDR_NOT_SUPPORTED | GapAdvertisingData::LE_GENERAL_DISCOVERABLE);
    ble.accumulateAdvertisingPayload(GapAdvertisingData::COMPLETE_LIST_16BIT_SERVICE_IDS, (uint8_t *)uuid16_list, sizeof(uuid16_list));
    ble.accumulateAdvertisingPayload(GapAdvertisingData::GENERIC_HEART_RATE_SENSOR);
    ble.accumulateAdvertisingPayload(GapAdvertisingData::COMPLETE_LOCAL_NAME, (uint8_t *)DEVICE_NAME, sizeof(DEVICE_NAME));
    ble.setAdvertisingType(GapAdvertisingParams::ADV_CONNECTABLE_UNDIRECTED);
    ble.setAdvertisingInterval(1600); /* 1000ms; in multiples of 0.625ms. */

The first line (above) is mandatory for Bluetooth Smart, and says that this device only supports Bluetooth low energy. The 'general discoverable' is the typical value to set when you want your device to be seen by other devices on order to connect. Next comes the ID for the heart rate sensor service and the name of the device.

After the payload is set the code sets the advertising type and the advertising interval. In Bluetooth Smart timing values are typically multiples of 625 us.

If you are new to Bluetooth Smart there are probably a lot of terms that are new to you. There is a lot of information about this on the Internet.

Committer:
Rohit Grover
Date:
Wed Jun 11 14:45:05 2014 +0100
Revision:
19:1713b11694ea
Parent:
18:8a2e313f49cb
Child:
20:58bff62d0f7a
make use of the new GattService constructor which takes in an array of pointers to Characteristics

Who changed what in which revision?

UserRevisionLine numberNew contents of line
ktownsend 0:87a7fc231fae 1 /* mbed Microcontroller Library
ktownsend 0:87a7fc231fae 2 * Copyright (c) 2006-2013 ARM Limited
ktownsend 0:87a7fc231fae 3 *
ktownsend 0:87a7fc231fae 4 * Licensed under the Apache License, Version 2.0 (the "License");
ktownsend 0:87a7fc231fae 5 * you may not use this file except in compliance with the License.
ktownsend 0:87a7fc231fae 6 * You may obtain a copy of the License at
ktownsend 0:87a7fc231fae 7 *
ktownsend 0:87a7fc231fae 8 * http://www.apache.org/licenses/LICENSE-2.0
ktownsend 0:87a7fc231fae 9 *
ktownsend 0:87a7fc231fae 10 * Unless required by applicable law or agreed to in writing, software
ktownsend 0:87a7fc231fae 11 * distributed under the License is distributed on an "AS IS" BASIS,
ktownsend 0:87a7fc231fae 12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
ktownsend 0:87a7fc231fae 13 * See the License for the specific language governing permissions and
ktownsend 0:87a7fc231fae 14 * limitations under the License.
ktownsend 0:87a7fc231fae 15 */
ktownsend 0:87a7fc231fae 16
ktownsend 0:87a7fc231fae 17 #include "mbed.h"
Rohit Grover 10:2436164b692e 18 #include "BLEDevice.h"
ktownsend 0:87a7fc231fae 19
Rohit Grover 10:2436164b692e 20 BLEDevice ble;
ktownsend 0:87a7fc231fae 21
Rohit Grover 3:24e2b056d229 22 DigitalOut led1(LED1);
Rohit Grover 9:5d693381e883 23
Rohit Grover 9:5d693381e883 24 #define NEED_CONSOLE_OUTPUT 0 /* Set this if you need debug messages on the console;
Rohit Grover 9:5d693381e883 25 * it will have an impact on code-size and power
Rohit Grover 9:5d693381e883 26 * consumption. */
Rohit Grover 9:5d693381e883 27
Rohit Grover 9:5d693381e883 28 #if NEED_CONSOLE_OUTPUT
Rohit Grover 9:5d693381e883 29 Serial pc(USBTX, USBRX);
Rohit Grover 9:5d693381e883 30 #define DEBUG(...) { pc.printf(__VA_ARGS__); }
Rohit Grover 9:5d693381e883 31 #else
Rohit Grover 9:5d693381e883 32 #define DEBUG(...) /* nothing */
Rohit Grover 9:5d693381e883 33 #endif /* #if NEED_CONSOLE_OUTPUT */
ktownsend 0:87a7fc231fae 34
ktownsend 0:87a7fc231fae 35 /* Battery Level Service */
Rohit Grover 3:24e2b056d229 36 uint8_t batt = 72; /* Battery level */
Rohit Grover 18:8a2e313f49cb 37 GattCharacteristic battLevel (GattCharacteristic::UUID_BATTERY_LEVEL_CHAR, &batt, sizeof(batt), sizeof(batt),
Rohit Grover 18:8a2e313f49cb 38 GattCharacteristic::BLE_GATT_CHAR_PROPERTIES_NOTIFY | GattCharacteristic::BLE_GATT_CHAR_PROPERTIES_READ);
Rohit Grover 19:1713b11694ea 39 GattCharacteristic *battChars[] = {
Rohit Grover 19:1713b11694ea 40 &battLevel,
Rohit Grover 19:1713b11694ea 41 };
Rohit Grover 19:1713b11694ea 42 GattService battService (GattService::UUID_BATTERY_SERVICE, battChars, sizeof(battChars) / sizeof(GattCharacteristic *));
ktownsend 0:87a7fc231fae 43
ktownsend 0:87a7fc231fae 44 /* Heart Rate Service */
ktownsend 0:87a7fc231fae 45 /* Service: https://developer.bluetooth.org/gatt/services/Pages/ServiceViewer.aspx?u=org.bluetooth.service.heart_rate.xml */
ktownsend 0:87a7fc231fae 46 /* HRM Char: https://developer.bluetooth.org/gatt/characteristics/Pages/CharacteristicViewer.aspx?u=org.bluetooth.characteristic.heart_rate_measurement.xml */
ktownsend 0:87a7fc231fae 47 /* Location: https://developer.bluetooth.org/gatt/characteristics/Pages/CharacteristicViewer.aspx?u=org.bluetooth.characteristic.body_sensor_location.xml */
Rohit Grover 18:8a2e313f49cb 48 static uint8_t hrmCounter = 100;
Rohit Grover 18:8a2e313f49cb 49 static uint8_t bpm[2] = {0x00, hrmCounter};
Rohit Grover 18:8a2e313f49cb 50 GattCharacteristic hrmRate(GattCharacteristic::UUID_HEART_RATE_MEASUREMENT_CHAR, bpm, sizeof(bpm), sizeof(bpm), GattCharacteristic::BLE_GATT_CHAR_PROPERTIES_NOTIFY);
Rohit Grover 18:8a2e313f49cb 51 static const uint8_t location = 0x03; /* Finger */
Rohit Grover 18:8a2e313f49cb 52 GattCharacteristic hrmLocation(GattCharacteristic::UUID_BODY_SENSOR_LOCATION_CHAR,
Rohit Grover 18:8a2e313f49cb 53 (uint8_t *)&location, sizeof(location), sizeof(location),
Rohit Grover 18:8a2e313f49cb 54 GattCharacteristic::BLE_GATT_CHAR_PROPERTIES_READ);
Rohit Grover 19:1713b11694ea 55 GattCharacteristic *hrmChars[] = {
Rohit Grover 19:1713b11694ea 56 &hrmRate, &hrmLocation,
Rohit Grover 19:1713b11694ea 57 };
Rohit Grover 19:1713b11694ea 58 GattService hrmService(GattService::UUID_HEART_RATE_SERVICE, hrmChars, sizeof(hrmChars) / sizeof(GattCharacteristic *));
ktownsend 0:87a7fc231fae 59
ktownsend 0:87a7fc231fae 60 /* Device Information service */
Rohit Grover 8:49d8ee0aac11 61 static const uint8_t deviceName[] = {'m', 'b', 'e', 'd'};
Rohit Grover 18:8a2e313f49cb 62 GattCharacteristic deviceManufacturer (GattCharacteristic::UUID_MANUFACTURER_NAME_STRING_CHAR,
Rohit Grover 18:8a2e313f49cb 63 (uint8_t *)deviceName, sizeof(deviceName), sizeof(deviceName),
Rohit Grover 18:8a2e313f49cb 64 GattCharacteristic::BLE_GATT_CHAR_PROPERTIES_READ);
Rohit Grover 19:1713b11694ea 65 GattCharacteristic *devInfoChars[] = {
Rohit Grover 19:1713b11694ea 66 &deviceManufacturer,
Rohit Grover 19:1713b11694ea 67 };
Rohit Grover 19:1713b11694ea 68 GattService deviceInformationService (GattService::UUID_DEVICE_INFORMATION_SERVICE,
Rohit Grover 19:1713b11694ea 69 devInfoChars, sizeof(devInfoChars) / sizeof(GattCharacteristic *));
ktownsend 0:87a7fc231fae 70
rgrover1 7:daab8ba5139e 71 static const uint16_t uuid16_list[] = {
rgrover1 7:daab8ba5139e 72 GattService::UUID_BATTERY_SERVICE,
rgrover1 7:daab8ba5139e 73 GattService::UUID_DEVICE_INFORMATION_SERVICE,
rgrover1 7:daab8ba5139e 74 GattService::UUID_HEART_RATE_SERVICE
rgrover1 7:daab8ba5139e 75 };
ktownsend 0:87a7fc231fae 76
rgrover1 7:daab8ba5139e 77 void timeoutCallback(void)
ktownsend 0:87a7fc231fae 78 {
Rohit Grover 9:5d693381e883 79 DEBUG("Advertising Timeout!\n\r");
rgrover1 7:daab8ba5139e 80 // Restart the advertising process with a much slower interval,
rgrover1 7:daab8ba5139e 81 // only start advertising again after a button press, etc.
rgrover1 7:daab8ba5139e 82 }
ktownsend 0:87a7fc231fae 83
rgrover1 7:daab8ba5139e 84 void connectionCallback(void)
rgrover1 7:daab8ba5139e 85 {
Rohit Grover 9:5d693381e883 86 DEBUG("Connected!\n\r");
rgrover1 7:daab8ba5139e 87 }
ktownsend 0:87a7fc231fae 88
rgrover1 7:daab8ba5139e 89 void disconnectionCallback(void)
ktownsend 0:87a7fc231fae 90 {
Rohit Grover 9:5d693381e883 91 DEBUG("Disconnected!\n\r");
Rohit Grover 9:5d693381e883 92 DEBUG("Restarting the advertising process\n\r");
rgrover1 7:daab8ba5139e 93 ble.startAdvertising();
rgrover1 7:daab8ba5139e 94 }
Rohit Grover 3:24e2b056d229 95
rgrover1 7:daab8ba5139e 96 void updatesEnabledCallback(uint16_t charHandle)
rgrover1 7:daab8ba5139e 97 {
rgrover1 7:daab8ba5139e 98 if (charHandle == hrmRate.getHandle()) {
Rohit Grover 9:5d693381e883 99 DEBUG("Heart rate notify enabled\n\r");
ktownsend 0:87a7fc231fae 100 }
rgrover1 7:daab8ba5139e 101 }
ktownsend 0:87a7fc231fae 102
rgrover1 7:daab8ba5139e 103 void updatesDisabledCallback(uint16_t charHandle)
rgrover1 7:daab8ba5139e 104 {
rgrover1 7:daab8ba5139e 105 if (charHandle == hrmRate.getHandle()) {
Rohit Grover 9:5d693381e883 106 DEBUG("Heart rate notify disabled\n\r");
ktownsend 0:87a7fc231fae 107 }
rgrover1 7:daab8ba5139e 108 }
ktownsend 0:87a7fc231fae 109
Rohit Grover 13:3ca2045597e7 110 /**
Rohit Grover 13:3ca2045597e7 111 * Runs once a second in interrupt context triggered by the 'ticker'; updates
Rohit Grover 13:3ca2045597e7 112 * battery level and hrmCounter if there is a connection.
Rohit Grover 13:3ca2045597e7 113 */
Rohit Grover 11:1d9aafee4984 114 void periodicCallback(void)
Rohit Grover 11:1d9aafee4984 115 {
Rohit Grover 11:1d9aafee4984 116 led1 = !led1; /* Do blinky on LED1 while we're waiting for BLE events */
Rohit Grover 11:1d9aafee4984 117
Rohit Grover 11:1d9aafee4984 118 if (ble.getGapState().connected) {
Rohit Grover 11:1d9aafee4984 119 /* Update battery level */
Rohit Grover 11:1d9aafee4984 120 batt++;
Rohit Grover 11:1d9aafee4984 121 if (batt > 100) {
Rohit Grover 11:1d9aafee4984 122 batt = 72;
Rohit Grover 11:1d9aafee4984 123 }
Rohit Grover 11:1d9aafee4984 124 ble.updateCharacteristicValue(battLevel.getHandle(), (uint8_t *)&batt, sizeof(batt));
Rohit Grover 11:1d9aafee4984 125
Rohit Grover 11:1d9aafee4984 126 /* Update the HRM measurement */
Rohit Grover 11:1d9aafee4984 127 /* First byte = 8-bit values, no extra info, Second byte = uint8_t HRM value */
Rohit Grover 11:1d9aafee4984 128 /* See --> https://developer.bluetooth.org/gatt/characteristics/Pages/CharacteristicViewer.aspx?u=org.bluetooth.characteristic.heart_rate_measurement.xml */
Rohit Grover 11:1d9aafee4984 129 hrmCounter++;
Rohit Grover 11:1d9aafee4984 130 if (hrmCounter == 175) {
Rohit Grover 11:1d9aafee4984 131 hrmCounter = 100;
Rohit Grover 11:1d9aafee4984 132 }
Rohit Grover 18:8a2e313f49cb 133 bpm[1] = hrmCounter;
Rohit Grover 11:1d9aafee4984 134 ble.updateCharacteristicValue(hrmRate.getHandle(), bpm, sizeof(bpm));
Rohit Grover 11:1d9aafee4984 135 }
Rohit Grover 11:1d9aafee4984 136 }
Rohit Grover 11:1d9aafee4984 137
ktownsend 0:87a7fc231fae 138 int main(void)
ktownsend 0:87a7fc231fae 139 {
Rohit Grover 3:24e2b056d229 140 led1 = 1;
Rohit Grover 11:1d9aafee4984 141 Ticker ticker;
Rohit Grover 11:1d9aafee4984 142 ticker.attach(periodicCallback, 1);
ktownsend 0:87a7fc231fae 143
Rohit Grover 15:7ba28817e31e 144 DEBUG("Initialising the nRF51822\n\r");
Rohit Grover 15:7ba28817e31e 145 ble.init();
Rohit Grover 15:7ba28817e31e 146
ktownsend 0:87a7fc231fae 147 /* Setup the local GAP/GATT event handlers */
rgrover1 7:daab8ba5139e 148 ble.onTimeout(timeoutCallback);
rgrover1 7:daab8ba5139e 149 ble.onConnection(connectionCallback);
rgrover1 7:daab8ba5139e 150 ble.onDisconnection(disconnectionCallback);
rgrover1 7:daab8ba5139e 151 ble.onUpdatesEnabled(updatesEnabledCallback);
rgrover1 7:daab8ba5139e 152 ble.onUpdatesDisabled(updatesDisabledCallback);
ktownsend 0:87a7fc231fae 153
Rohit Grover 15:7ba28817e31e 154 /* setup advertising */
rgrover1 7:daab8ba5139e 155 ble.accumulateAdvertisingPayload(GapAdvertisingData::BREDR_NOT_SUPPORTED);
rgrover1 7:daab8ba5139e 156 ble.accumulateAdvertisingPayload(GapAdvertisingData::COMPLETE_LIST_16BIT_SERVICE_IDS, (uint8_t *)uuid16_list, sizeof(uuid16_list));
rgrover1 7:daab8ba5139e 157 ble.accumulateAdvertisingPayload(GapAdvertisingData::HEART_RATE_SENSOR_HEART_RATE_BELT);
rgrover1 7:daab8ba5139e 158 ble.setAdvertisingType(GapAdvertisingParams::ADV_CONNECTABLE_UNDIRECTED);
rgrover1 7:daab8ba5139e 159 ble.setAdvertisingInterval(160); /* 100ms; in multiples of 0.625ms. */
rgrover1 7:daab8ba5139e 160 ble.startAdvertising();
Rohit Grover 3:24e2b056d229 161
Rohit Grover 11:1d9aafee4984 162 ble.addService(deviceInformationService);
Rohit Grover 11:1d9aafee4984 163 ble.addService(battService);
Rohit Grover 11:1d9aafee4984 164 ble.addService(hrmService);
ktownsend 0:87a7fc231fae 165
Rohit Grover 11:1d9aafee4984 166 while (true) {
Rohit Grover 11:1d9aafee4984 167 ble.waitForEvent();
ktownsend 0:87a7fc231fae 168 }
ktownsend 0:87a7fc231fae 169 }