A multifunctional and modular Firmware for Multitech's mDot based on ARM mBed provides a widerange of functionality for several Sensors such as MAX44009, BME280, MPU9250, SI1143 and uBlox. It allows you to quickly build a Sensornode that measures specific data with its sensors and sends it via LoRaWAN.

Dependencies:   mDot_LoRa_Sensornode_Flowmeter_impl mbed-rtos mbed

LoRa-Sensornode Firmware for Multitech mDot

A multifunctional and modular Firmware for Multitech's mDot which provides a widerange of functionality for several Sensors. It allows you to quickly build a Sensornode that measures specific data with its sensors and sends it via LoRaWAN.

/media/uploads/mitea1/logo-lora-600x370.png /media/uploads/mitea1/mt_mdot_family_642px.png

Supported Sensors

Idea

The Firmware has some predefined Application Modes running different Tasks(Measurements). Each mode can be used in a different Scenario. Application_Modes define which sensors are used, how often they aquire data and how often the data has to be sent via LoRa. Lets say you just want to measure the Light then you choose an Application_Mode (or define one) that only runs TaskLight for light measurement. As a standard all measurements are taken every second and sent via LoRa but you can change that interval depending on your usage Scenario

Committer:
mitea1
Date:
Wed Jul 06 20:40:36 2016 +0000
Revision:
0:f2815503561f
Child:
4:2674bd4168f8
initial commit;

Who changed what in which revision?

UserRevisionLine numberNew contents of line
mitea1 0:f2815503561f 1 /**
mitea1 0:f2815503561f 2 * @file TaskProximity.h
mitea1 0:f2815503561f 3 *
mitea1 0:f2815503561f 4 * @author Adrian
mitea1 0:f2815503561f 5 * @date 03.06.2016
mitea1 0:f2815503561f 6 *
mitea1 0:f2815503561f 7 */
mitea1 0:f2815503561f 8 #include "SI1143.h"
mitea1 0:f2815503561f 9 #include "SI1143ProximityMessage.h"
mitea1 0:f2815503561f 10 #include "main.h"
mitea1 0:f2815503561f 11
mitea1 0:f2815503561f 12 #ifndef TASKPROXIMITY_H_
mitea1 0:f2815503561f 13 #define TASKPROXIMITY_H_
mitea1 0:f2815503561f 14
mitea1 0:f2815503561f 15 /**
mitea1 0:f2815503561f 16 * @class TaskProximity
mitea1 0:f2815503561f 17 * @brief This TaskProximity Class handles the proximity measurement using the SI1143.
mitea1 0:f2815503561f 18 * Starting the task using the start() starts the measurement.
mitea1 0:f2815503561f 19 * It can be used alongside with other measurement Tasks inside the mbed::rtos
mitea1 0:f2815503561f 20 * environment. The Task Class basically wraps mbeds Thread functionality.
mitea1 0:f2815503561f 21 */
mitea1 0:f2815503561f 22 class TaskProximity {
mitea1 0:f2815503561f 23 public:
mitea1 0:f2815503561f 24 TaskProximity(SI1143*,Mutex*,Queue<SI1143ProximityMessage,PROXIMITY_QUEUE_LENGHT>*);
mitea1 0:f2815503561f 25 TaskProximity(SI1143*,Mutex*,Queue<SI1143ProximityMessage,PROXIMITY_QUEUE_LENGHT>*,
mitea1 0:f2815503561f 26 osPriority, uint32_t, unsigned char*);
mitea1 0:f2815503561f 27 virtual ~TaskProximity();
mitea1 0:f2815503561f 28
mitea1 0:f2815503561f 29
mitea1 0:f2815503561f 30 /**
mitea1 0:f2815503561f 31 * @brief Starts the task by building it and connecting a callback function to
mitea1 0:f2815503561f 32 * the mbed::Thread
mitea1 0:f2815503561f 33 * @return
mitea1 0:f2815503561f 34 */
mitea1 0:f2815503561f 35 osStatus start();
mitea1 0:f2815503561f 36
mitea1 0:f2815503561f 37 /**
mitea1 0:f2815503561f 38 * @brief Stops the task. Should only be used after start() was used
mitea1 0:f2815503561f 39 * @return
mitea1 0:f2815503561f 40 */
mitea1 0:f2815503561f 41 osStatus stop();
mitea1 0:f2815503561f 42
mitea1 0:f2815503561f 43
mitea1 0:f2815503561f 44 /**
mitea1 0:f2815503561f 45 * @brief Gets the actual state of the Task either RUNNING or SLEEPING
mitea1 0:f2815503561f 46 * @return
mitea1 0:f2815503561f 47 */
mitea1 0:f2815503561f 48 TASK_STATE getState();
mitea1 0:f2815503561f 49
mitea1 0:f2815503561f 50 private:
mitea1 0:f2815503561f 51 rtos::Thread* thread;
mitea1 0:f2815503561f 52 rtos::Queue<SI1143ProximityMessage,PROXIMITY_QUEUE_LENGHT>* queue;
mitea1 0:f2815503561f 53 rtos::Mutex* mutexI2C ;
mitea1 0:f2815503561f 54 osPriority priority;
mitea1 0:f2815503561f 55 uint32_t stack_size;
mitea1 0:f2815503561f 56 unsigned char *stack_pointer;
mitea1 0:f2815503561f 57
mitea1 0:f2815503561f 58 TASK_STATE state;
mitea1 0:f2815503561f 59
mitea1 0:f2815503561f 60 SI1143* si1143;
mitea1 0:f2815503561f 61
mitea1 0:f2815503561f 62
mitea1 0:f2815503561f 63 /**
mitea1 0:f2815503561f 64 * @brief A Callback function thats called by the mbed::Thread of this TaskClass
mitea1 0:f2815503561f 65 * @param
mitea1 0:f2815503561f 66 */
mitea1 0:f2815503561f 67 static void callBack(void const *);
mitea1 0:f2815503561f 68
mitea1 0:f2815503561f 69 /**
mitea1 0:f2815503561f 70 * @brief A thread safe method that acquires data from the gyroscope. After acquiring data from the
mitea1 0:f2815503561f 71 * it stores the data inside a MPU9250GyroscopeMessage
mitea1 0:f2815503561f 72 */
mitea1 0:f2815503561f 73 void measureProximity();
mitea1 0:f2815503561f 74
mitea1 0:f2815503561f 75
mitea1 0:f2815503561f 76 /**
mitea1 0:f2815503561f 77 * @brief Sets the message Queue of the Task where the measured values will be stored
mitea1 0:f2815503561f 78 * after the measurement
mitea1 0:f2815503561f 79 * @param queueProximity the queue where the SI1143ProximityMessage will be stored
mitea1 0:f2815503561f 80 */
mitea1 0:f2815503561f 81 void setQueue(Queue<SI1143ProximityMessage,PROXIMITY_QUEUE_LENGHT>* queueProximity);
mitea1 0:f2815503561f 82
mitea1 0:f2815503561f 83 /**
mitea1 0:f2815503561f 84 * @brief Sets the mutex thats used for a thread safe measurement
mitea1 0:f2815503561f 85 * @param mutexI2C the I2C mutex
mitea1 0:f2815503561f 86 */
mitea1 0:f2815503561f 87 void setMutex(Mutex* mutexI2C);
mitea1 0:f2815503561f 88
mitea1 0:f2815503561f 89 /**
mitea1 0:f2815503561f 90 * @brief Sets the priority of the Task
mitea1 0:f2815503561f 91 * @param priority priority of the Task
mitea1 0:f2815503561f 92 */
mitea1 0:f2815503561f 93 void setPriority(osPriority priority);
mitea1 0:f2815503561f 94
mitea1 0:f2815503561f 95 /**
mitea1 0:f2815503561f 96 * @brief Sets the size of the Task
mitea1 0:f2815503561f 97 * @param stackSize the stack size in Bytes
mitea1 0:f2815503561f 98 */
mitea1 0:f2815503561f 99 void setStackSize(uint32_t stackSize);
mitea1 0:f2815503561f 100
mitea1 0:f2815503561f 101 /**
mitea1 0:f2815503561f 102 * @brief Sets the stack pointer of for the task stack
mitea1 0:f2815503561f 103 * @param stackPointer
mitea1 0:f2815503561f 104 */
mitea1 0:f2815503561f 105 void setStackPointer(unsigned char* stackPointer);
mitea1 0:f2815503561f 106
mitea1 0:f2815503561f 107
mitea1 0:f2815503561f 108 /**
mitea1 0:f2815503561f 109 * @brief Sets the actual state of the Task.
mitea1 0:f2815503561f 110 * @param taskState either RUNNING or SLEEPING
mitea1 0:f2815503561f 111 */
mitea1 0:f2815503561f 112 void setState(TASK_STATE);
mitea1 0:f2815503561f 113 };
mitea1 0:f2815503561f 114
mitea1 0:f2815503561f 115 #endif /* TASKPROXIMITY_H_ */