add rotary
Dependencies: X_NUCLEO_IKS01A1 LoRaWAN-lib SX1272Lib mbed
Fork of Canada-SX1272-LoRaWAN-Bootcamp by
LoRaWAN-SX1272-Mbed-Shield
Overview
LoRaWAN-SX1272-Mbed-Shield application demo is a LoRaWAN Class-A device example project using LoRaWAN-lib and SX1272Lib libraries that send out sensors data.
Prerequisites
1. NUCLEO_L152RE board.
2. SX1272-mbed-shield board.
3. X-NUCLEO-IKS01A1.
4. Grove Red LED.
5. Grove Button.
6. Grove Rotary Angle Sensor.
7. mbed online compiler.
8. Tera Term.
Hardware Configuration
Application 8, 9, 11
1. Connect NUCLEO_L152RE with X-NUCLEO-IKS01A1.
2. On top of X-NUCLEO-IKS01A1, connect SX1272-mbed-shield.
Application 13
1. Connect NUCLEO_L152RE with SX1272-mbed-shield.
2. Connect Grove Red LED with DIO_D6 port on SX1272-mbed-shield.
3. Connect Grove Button with DIO_D8 port on SX1272-mbed-shield.
4. Connect Grove Rotary Angle Sensor with ANA_A1 port SX1272-mbed-shield.
Software Configuration
The end-device must be configured with the following parameters:
- Commissioning.h
- Activation Type: OTA or ABP
- OTA: #define OVER_THE_AIR_ACTIVATION 1
- Network Type: Public or Private
- Public: #define LORAWAN_PUBLIC_NETWORK true
- LORAWAN_DEVICE_EUI (8 Bytes) : Fist 3 Bytes is the Organizationally Unique Identifier (OUI) followed by 5 bytes of unique ID. If not defined by user, then the firmware automatically assigns one to the end-device. (For OTA)
- #define IEEE_OUI 0x00, 0x00, 0x00
- #define LORAWAN_DEVICE_EUI { IEEE_OUI, 0x00, 0x00, 0x00, 0x00, 0x00 }
- #define IEEE_OUI 0x00, 0x00, 0x00
- LORAWAN_APPLICATION_EUI (8 Bytes) (For OTA)
- #define LORAWAN_APPLICATION_EUI { 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00 }
- LORAWAN_APPLICATION_KEY (16 Bytes) (For OTA)
- #define LORAWAN_APPLICATION_KEY { 0x00, 0x11, 0x22, 0x33, 0x44, 0x55, 0x66, 0x77, 0x88, 0x99, 0xaa, 0xbb, 0xcc, 0xdd, 0xee, 0xff }
- #define LORAWAN_APPLICATION_KEY { 0x00, 0x11, 0x22, 0x33, 0x44, 0x55, 0x66, 0x77, 0x88, 0x99, 0xaa, 0xbb, 0xcc, 0xdd, 0xee, 0xff }
- LORAWAN_DEVICE_ADDRESS (For ABP)
- #define LORAWAN_DEVICE_ADDRESS ( uint32_t )0x0
- LORAWAN_NWKSKEY (For ABP)
- #define LORAWAN_NWKSKEY { 0x2B, 0x7E, 0x15, 0x16, 0x28, 0xAE, 0xD2, 0xA6, 0xAB, 0xF7, 0x15, 0x88, 0x09, 0xCF, 0x4F, 0x3C }
- LORAWAN_APPSKEY (For ABP)
- #define LORAWAN_APPSKEY { 0x2B, 0x7E, 0x15, 0x16, 0x28, 0xAE, 0xD2, 0xA6, 0xAB, 0xF7, 0x15, 0x88, 0x09, 0xCF, 0x4F, 0x3C }
- Activation Type: OTA or ABP
- Configure.h
- Communication Type: Hybrid or FHSS
- Hybrid: #define USE_BAND_915_HYBRID
- Join request Period:
- 5 sec: #define OVER_THE_AIR_ACTIVATION_DUTYCYCLE 5000000 value in us
- TX Period:
- 5 sec: #define APP_TX_DUTYCYCLE 5000000 value in us
- Uplink message: Confirmed or Unconfirmed
- Confirmed: #define LORAWAN_CONFIRMED_MSG_ON 1
- ADR(Adaptive Data Rate): ON or OFF
- OFF: #define LORAWAN_ADR_ON 0
- Default data rate: DR_0 or DR_1 or DR_2 or DR_3 or DR_4
- DR_0: #define LORAWAN_DEFAULT_DATARATE DR_0
- Application Type: 8 (IKS01A1) or 9 (IKS01A1+Cayenne) or 11 (Push Button) or 13 (rotary+Cayenne)
- 9: #define LORAWAN_APP_PORT 9
- Tx Power: 10 to 30
- 20 dBm: #define LORAWAN_TX_POWER TX_POWER_20_DBM
- Communication Type: Hybrid or FHSS
Serial Terminal Display
- Use Tera Term to see the sending message (baud rate: 115200):
- button = 0 (if not press) button = 1 (if pressed)
- rotary = 0 ~ 300
- button = 0 (if not press) button = 1 (if pressed)
system/utilities.h@0:6cc76d70e2a1, 2017-04-06 (annotated)
- Committer:
- ubhat
- Date:
- Thu Apr 06 21:59:50 2017 +0000
- Revision:
- 0:6cc76d70e2a1
LoRaWAN SX1272 Application
Who changed what in which revision?
User | Revision | Line number | New contents of line |
---|---|---|---|
ubhat | 0:6cc76d70e2a1 | 1 | /* |
ubhat | 0:6cc76d70e2a1 | 2 | / _____) _ | | |
ubhat | 0:6cc76d70e2a1 | 3 | ( (____ _____ ____ _| |_ _____ ____| |__ |
ubhat | 0:6cc76d70e2a1 | 4 | \____ \| ___ | (_ _) ___ |/ ___) _ \ |
ubhat | 0:6cc76d70e2a1 | 5 | _____) ) ____| | | || |_| ____( (___| | | | |
ubhat | 0:6cc76d70e2a1 | 6 | (______/|_____)_|_|_| \__)_____)\____)_| |_| |
ubhat | 0:6cc76d70e2a1 | 7 | (C)2013 Semtech |
ubhat | 0:6cc76d70e2a1 | 8 | |
ubhat | 0:6cc76d70e2a1 | 9 | Description: Helper functions implementation |
ubhat | 0:6cc76d70e2a1 | 10 | |
ubhat | 0:6cc76d70e2a1 | 11 | License: Revised BSD License, see LICENSE.TXT file include in the project |
ubhat | 0:6cc76d70e2a1 | 12 | |
ubhat | 0:6cc76d70e2a1 | 13 | Maintainer: Miguel Luis and Gregory Cristian |
ubhat | 0:6cc76d70e2a1 | 14 | */ |
ubhat | 0:6cc76d70e2a1 | 15 | #ifndef __UTILITIES_H__ |
ubhat | 0:6cc76d70e2a1 | 16 | #define __UTILITIES_H__ |
ubhat | 0:6cc76d70e2a1 | 17 | |
ubhat | 0:6cc76d70e2a1 | 18 | /*! |
ubhat | 0:6cc76d70e2a1 | 19 | * \brief Returns the minimum value betwen a and b |
ubhat | 0:6cc76d70e2a1 | 20 | * |
ubhat | 0:6cc76d70e2a1 | 21 | * \param [IN] a 1st value |
ubhat | 0:6cc76d70e2a1 | 22 | * \param [IN] b 2nd value |
ubhat | 0:6cc76d70e2a1 | 23 | * \retval minValue Minimum value |
ubhat | 0:6cc76d70e2a1 | 24 | */ |
ubhat | 0:6cc76d70e2a1 | 25 | #define MIN( a, b ) ( ( ( a ) < ( b ) ) ? ( a ) : ( b ) ) |
ubhat | 0:6cc76d70e2a1 | 26 | |
ubhat | 0:6cc76d70e2a1 | 27 | /*! |
ubhat | 0:6cc76d70e2a1 | 28 | * \brief Returns the maximum value betwen a and b |
ubhat | 0:6cc76d70e2a1 | 29 | * |
ubhat | 0:6cc76d70e2a1 | 30 | * \param [IN] a 1st value |
ubhat | 0:6cc76d70e2a1 | 31 | * \param [IN] b 2nd value |
ubhat | 0:6cc76d70e2a1 | 32 | * \retval maxValue Maximum value |
ubhat | 0:6cc76d70e2a1 | 33 | */ |
ubhat | 0:6cc76d70e2a1 | 34 | #define MAX( a, b ) ( ( ( a ) > ( b ) ) ? ( a ) : ( b ) ) |
ubhat | 0:6cc76d70e2a1 | 35 | |
ubhat | 0:6cc76d70e2a1 | 36 | /*! |
ubhat | 0:6cc76d70e2a1 | 37 | * \brief Returns 2 raised to the power of n |
ubhat | 0:6cc76d70e2a1 | 38 | * |
ubhat | 0:6cc76d70e2a1 | 39 | * \param [IN] n power value |
ubhat | 0:6cc76d70e2a1 | 40 | * \retval result of raising 2 to the power n |
ubhat | 0:6cc76d70e2a1 | 41 | */ |
ubhat | 0:6cc76d70e2a1 | 42 | #define POW2( n ) ( 1 << n ) |
ubhat | 0:6cc76d70e2a1 | 43 | |
ubhat | 0:6cc76d70e2a1 | 44 | /*! |
ubhat | 0:6cc76d70e2a1 | 45 | * \brief Initializes the pseudo ramdom generator initial value |
ubhat | 0:6cc76d70e2a1 | 46 | * |
ubhat | 0:6cc76d70e2a1 | 47 | * \param [IN] seed Pseudo ramdom generator initial value |
ubhat | 0:6cc76d70e2a1 | 48 | */ |
ubhat | 0:6cc76d70e2a1 | 49 | void srand1( uint32_t seed ); |
ubhat | 0:6cc76d70e2a1 | 50 | |
ubhat | 0:6cc76d70e2a1 | 51 | /*! |
ubhat | 0:6cc76d70e2a1 | 52 | * \brief Computes a random number between min and max |
ubhat | 0:6cc76d70e2a1 | 53 | * |
ubhat | 0:6cc76d70e2a1 | 54 | * \param [IN] min range minimum value |
ubhat | 0:6cc76d70e2a1 | 55 | * \param [IN] max range maximum value |
ubhat | 0:6cc76d70e2a1 | 56 | * \retval random random value in range min..max |
ubhat | 0:6cc76d70e2a1 | 57 | */ |
ubhat | 0:6cc76d70e2a1 | 58 | int32_t randr( int32_t min, int32_t max ); |
ubhat | 0:6cc76d70e2a1 | 59 | |
ubhat | 0:6cc76d70e2a1 | 60 | /*! |
ubhat | 0:6cc76d70e2a1 | 61 | * \brief Copies size elements of src array to dst array |
ubhat | 0:6cc76d70e2a1 | 62 | * |
ubhat | 0:6cc76d70e2a1 | 63 | * \remark STM32 Standard memcpy function only works on pointers that are aligned |
ubhat | 0:6cc76d70e2a1 | 64 | * |
ubhat | 0:6cc76d70e2a1 | 65 | * \param [OUT] dst Destination array |
ubhat | 0:6cc76d70e2a1 | 66 | * \param [IN] src Source array |
ubhat | 0:6cc76d70e2a1 | 67 | * \param [IN] size Number of bytes to be copied |
ubhat | 0:6cc76d70e2a1 | 68 | */ |
ubhat | 0:6cc76d70e2a1 | 69 | void memcpy1( uint8_t *dst, const uint8_t *src, uint16_t size ); |
ubhat | 0:6cc76d70e2a1 | 70 | |
ubhat | 0:6cc76d70e2a1 | 71 | /*! |
ubhat | 0:6cc76d70e2a1 | 72 | * \brief Copies size elements of src array to dst array reversing the byte order |
ubhat | 0:6cc76d70e2a1 | 73 | * |
ubhat | 0:6cc76d70e2a1 | 74 | * \param [OUT] dst Destination array |
ubhat | 0:6cc76d70e2a1 | 75 | * \param [IN] src Source array |
ubhat | 0:6cc76d70e2a1 | 76 | * \param [IN] size Number of bytes to be copied |
ubhat | 0:6cc76d70e2a1 | 77 | */ |
ubhat | 0:6cc76d70e2a1 | 78 | void memcpyr( uint8_t *dst, const uint8_t *src, uint16_t size ); |
ubhat | 0:6cc76d70e2a1 | 79 | |
ubhat | 0:6cc76d70e2a1 | 80 | /*! |
ubhat | 0:6cc76d70e2a1 | 81 | * \brief Set size elements of dst array with value |
ubhat | 0:6cc76d70e2a1 | 82 | * |
ubhat | 0:6cc76d70e2a1 | 83 | * \remark STM32 Standard memset function only works on pointers that are aligned |
ubhat | 0:6cc76d70e2a1 | 84 | * |
ubhat | 0:6cc76d70e2a1 | 85 | * \param [OUT] dst Destination array |
ubhat | 0:6cc76d70e2a1 | 86 | * \param [IN] value Default value |
ubhat | 0:6cc76d70e2a1 | 87 | * \param [IN] size Number of bytes to be copied |
ubhat | 0:6cc76d70e2a1 | 88 | */ |
ubhat | 0:6cc76d70e2a1 | 89 | void memset1( uint8_t *dst, uint8_t value, uint16_t size ); |
ubhat | 0:6cc76d70e2a1 | 90 | |
ubhat | 0:6cc76d70e2a1 | 91 | /*! |
ubhat | 0:6cc76d70e2a1 | 92 | * \brief Converts a nibble to an hexadecimal character |
ubhat | 0:6cc76d70e2a1 | 93 | * |
ubhat | 0:6cc76d70e2a1 | 94 | * \param [IN] a Nibble to be converted |
ubhat | 0:6cc76d70e2a1 | 95 | * \retval hexChar Converted hexadecimal character |
ubhat | 0:6cc76d70e2a1 | 96 | */ |
ubhat | 0:6cc76d70e2a1 | 97 | int8_t Nibble2HexChar( uint8_t a ); |
ubhat | 0:6cc76d70e2a1 | 98 | |
ubhat | 0:6cc76d70e2a1 | 99 | #endif // __UTILITIES_H__ |