LoRaWAN end device MAC layer for SX1272 and SX1276. Supports LoRaWAN-1.0 and LoRaWAN-1.1

Dependencies:   sx12xx_hal

Dependents:   LoRaWAN-SanJose_Bootcamp LoRaWAN-grove-cayenne LoRaWAN-classC-demo LoRaWAN-grove-cayenne ... more

radio chip selection

Radio chip driver is not included, because two options are available.
If you're using SX1272 or SX1276, then import sx127x driver into your program.
if you're using SX1261 or SX1262, then import sx126x driver into your program.
If you're using NAmote72 or Murata discovery, then you must import only sx127x driver.

application project requirements

This library requires mbed TLS to be enabled.
The file mbed_app.json must be present in the project using this library:

{
    "macros": [ "MBEDTLS_CMAC_C" ]
}

regional PHY selection

All end device configuration is done in Commissioning.h, define desired radio frequency band of operation in this header file.
Commissioning.h is located in the application using this library.

end device provisioning

End device is provisioned by editing Commissioning.h in the application which is using this library
To use LoRaWAN-1.0 OTA: make sure LORAWAN_ROOT_APPKEY is undefined.
To use LoRaWAN-1.1 OTA, define LORAWAN_ROOT_APPKEY.
To select OTA operation, define LORAWAN_JOIN_EUI, then LORAWAN_DEVICE_EUI must be defined, along with root key(s).
To select ABP operation, undefine LORAWAN_JOIN_EUI: then define session keys

LoRaWAN 1.0 nameLoRaWAN 1.1 nameComissioning.h defnedescription
OTADevEUIDevEUILORAWAN_DEVICE_EUIuniquely identifies end device
OTAAppEUIJoinEUILORAWAN_JOIN_EUI
OTAAppKeyNwkKeyLORAWAN_ROOT_NWKKEYroot key for network server
OTA(note 1)AppKeyLORAWAN_ROOT_APPKEYroot key for application server
ABPNwkSKey(note 3)LORAWAN_FNwkSIntKeynetwork session key
ABP(note 2)SNwkSIntKeyLORAWAN_SNwkSIntKeymac layer network integrity key
ABP(note 2)NwkSEncKeyLORAWAN_NwkSEncKeynetwork session encryption key
ABP(note 2)FNwkSIntKeyLORAWAN_FNwkSIntKeyforwarding network session integrity key
ABPAppSKeyAppSKeyLORAWAN_APPSKEYapplication session encryption key

(note 1): LoRaWAN-1.0 OTA uses a single root key for both network server and application server.

In LoRaWAN-1.0 OTA: the single root AppKey is used to generate NwkSkey and AppSKey.
(note 2): In LoRaWAN-1.0 (both OTA and ABP) SNwkSIntKey, NwkSEncKey. FNwkSIntKey are of same value and are collectively known as NwkSKey.
(note 3): LoRaWAN-1.0 uses single network session key, LoRaWAN-1.1 uses 3 network session keys. Both use a unique application session key.


In LoRaWAN-1.1 OTA: the root NwkKey is used to generate SNwkSIntKey, NwkSEncKey, FNwkSIntKey
In LoRaWAN-1.1 OTA: the root AppKey is used to generate AppSKey


in ABP mode, the DevAddr, and session keys are fixed (never change), and frame counters never reset to zero.
ABP operation has no concept of: root keys, or DevEUI or JoinEUI/AppEUI.
in OTA mode, the DevAddr and session keys are assigned at join procedure, and frame counters reset at join.

eeprom

This library includes eeprom driver to support non-volatile storage required by LoRaWAN specification.
Currently eeprom is implemented for STM32L1 family and STM32L0 family.
Writing of values are wear-leveled to increase endurance; each write operation circulates across several memory locations. A read operation returns the highest value found. This simple method is used for sequence numbers which only increase.

value nameused in
DevNonceOTAfor Join request (note 1)
RJcount1OTAfor ReJoin Type 1 request
FCntUpABPuplink frame counter
NFCntDownABPdownlink frame counter
AFCntDownABPdownlink frame counter

AFCntDown is only used in LoRaWAN-1.1 when application payload is present in downlink and FPort > 0.
NFCntDown is used in LoRaWAN-1.1 when FPort is zero in downlink or application payload not present.
NFCntDown is the only downlink frame counter used in LoRaWAN-1.0
(note 1) OTA DevNonce is random number in LoRaWAN-1.0, therefore not stored in eeprom. DevNonce in LoRaWAN-1.1 is forever increasing (non-volatile) number upon each join request,.
RJcount0 is only stored in RAM because the value resets upon new session from JoinAccept, therefore not stored in eeprom.
Frame counters in OTA mode reset upon new session in join request, therefore are stored in RAM instead of eeprom for OTA.

radio driver support

When SX127x driver is used, both SX1272 and SX1276 are supported without defining at compile time. The chip is detected at start-up.
Supported radio platforms:


Alternately, when SX126x driver is imported, the SX126xDVK1xAS board is used.

low-speed clock oscillator selection

LoRaWAN uses 32768Hz crystal to permit low-power operation.
However, some mbed targets might revert to low-speed internal oscillator, which is not accurate enough for LoRaWAN operation.
An oscillator check is performed at initialization; program will not start if internal oscillator is used.
To force LSE watch crystal, add to mbed_app.json

{
    "macros": [ "MBEDTLS_CMAC_C" ],
    "target_overrides": {
        "<your-target>": {
            "target.lse_available": true
        }
    }
}
Committer:
Wayne Roberts
Date:
Wed Feb 28 10:48:11 2018 -0800
Revision:
0:6b3ac9c5a042
Child:
3:eb174e10afbb
initial commit

Who changed what in which revision?

UserRevisionLine numberNew contents of line
Wayne Roberts 0:6b3ac9c5a042 1 #include "board.h"
Wayne Roberts 0:6b3ac9c5a042 2 #if defined(USE_BAND_915_HYBRID) || defined(USE_BAND_915)
Wayne Roberts 0:6b3ac9c5a042 3 #include <stdint.h>
Wayne Roberts 0:6b3ac9c5a042 4 #include "LoRaMacPrivate.h"
Wayne Roberts 0:6b3ac9c5a042 5
Wayne Roberts 0:6b3ac9c5a042 6 ChannelParams_t Channels[LORA_MAX_NB_CHANNELS];
Wayne Roberts 0:6b3ac9c5a042 7 uint16_t ChannelsMaskRemaining[6];
Wayne Roberts 0:6b3ac9c5a042 8 const int8_t TxPowers[] = { 30, 28, 26, 24, 22, 20, 18, 16, 14, 12, 10 };
Wayne Roberts 0:6b3ac9c5a042 9
Wayne Roberts 0:6b3ac9c5a042 10 // DR: 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15
Wayne Roberts 0:6b3ac9c5a042 11 const uint8_t Datarates[] = { 10, 9, 8, 7, 8, 0, 0, 0, 12, 11, 10, 9, 8, 7, 0, 0};
Wayne Roberts 0:6b3ac9c5a042 12
Wayne Roberts 0:6b3ac9c5a042 13 const uint8_t MaxPayloadOfDatarate[] = { 11, 53, 125, 242, 242, 0, 0, 0, 53, 129, 242, 242, 242, 242, 0, 0 };
Wayne Roberts 0:6b3ac9c5a042 14
Wayne Roberts 0:6b3ac9c5a042 15 bool DisableChannelInMask( uint8_t id, uint16_t* mask )
Wayne Roberts 0:6b3ac9c5a042 16 {
Wayne Roberts 0:6b3ac9c5a042 17 uint8_t index = 0;
Wayne Roberts 0:6b3ac9c5a042 18 index = id / 16;
Wayne Roberts 0:6b3ac9c5a042 19
Wayne Roberts 0:6b3ac9c5a042 20 if( ( index > 4 ) || ( id >= LORA_MAX_NB_CHANNELS ) )
Wayne Roberts 0:6b3ac9c5a042 21 {
Wayne Roberts 0:6b3ac9c5a042 22 return false;
Wayne Roberts 0:6b3ac9c5a042 23 }
Wayne Roberts 0:6b3ac9c5a042 24
Wayne Roberts 0:6b3ac9c5a042 25 // Deactivate channel
Wayne Roberts 0:6b3ac9c5a042 26 mask[index] &= ~( 1 << ( id % 16 ) );
Wayne Roberts 0:6b3ac9c5a042 27
Wayne Roberts 0:6b3ac9c5a042 28 return true;
Wayne Roberts 0:6b3ac9c5a042 29 }
Wayne Roberts 0:6b3ac9c5a042 30
Wayne Roberts 0:6b3ac9c5a042 31 /*!
Wayne Roberts 0:6b3ac9c5a042 32 * Up/Down link data rates offset definition
Wayne Roberts 0:6b3ac9c5a042 33 */
Wayne Roberts 0:6b3ac9c5a042 34 const int8_t datarateOffsets[5][4] =
Wayne Roberts 0:6b3ac9c5a042 35 {
Wayne Roberts 0:6b3ac9c5a042 36 { DR_10, DR_9 , DR_8 , DR_8 }, // DR_0
Wayne Roberts 0:6b3ac9c5a042 37 { DR_11, DR_10, DR_9 , DR_8 }, // DR_1
Wayne Roberts 0:6b3ac9c5a042 38 { DR_12, DR_11, DR_10, DR_9 }, // DR_2
Wayne Roberts 0:6b3ac9c5a042 39 { DR_13, DR_12, DR_11, DR_10 }, // DR_3
Wayne Roberts 0:6b3ac9c5a042 40 { DR_13, DR_13, DR_12, DR_11 }, // DR_4
Wayne Roberts 0:6b3ac9c5a042 41 };
Wayne Roberts 0:6b3ac9c5a042 42
Wayne Roberts 0:6b3ac9c5a042 43 uint32_t region_GetRxBandwidth( int8_t datarate )
Wayne Roberts 0:6b3ac9c5a042 44 {
Wayne Roberts 0:6b3ac9c5a042 45 if( datarate >= DR_4 )
Wayne Roberts 0:6b3ac9c5a042 46 {// LoRa 500 kHz
Wayne Roberts 0:6b3ac9c5a042 47 return 2;
Wayne Roberts 0:6b3ac9c5a042 48 }
Wayne Roberts 0:6b3ac9c5a042 49 return 0; // LoRa 125 kHz
Wayne Roberts 0:6b3ac9c5a042 50 }
Wayne Roberts 0:6b3ac9c5a042 51
Wayne Roberts 0:6b3ac9c5a042 52 uint16_t region_GetRxSymbolTimeout( int8_t datarate )
Wayne Roberts 0:6b3ac9c5a042 53 {
Wayne Roberts 0:6b3ac9c5a042 54 switch( datarate )
Wayne Roberts 0:6b3ac9c5a042 55 {
Wayne Roberts 0:6b3ac9c5a042 56 case DR_0: // SF10 - BW125
Wayne Roberts 0:6b3ac9c5a042 57 return 5;
Wayne Roberts 0:6b3ac9c5a042 58
Wayne Roberts 0:6b3ac9c5a042 59 case DR_1: // SF9 - BW125
Wayne Roberts 0:6b3ac9c5a042 60 case DR_2: // SF8 - BW125
Wayne Roberts 0:6b3ac9c5a042 61 case DR_8: // SF12 - BW500
Wayne Roberts 0:6b3ac9c5a042 62 case DR_9: // SF11 - BW500
Wayne Roberts 0:6b3ac9c5a042 63 case DR_10: // SF10 - BW500
Wayne Roberts 0:6b3ac9c5a042 64 return 8;
Wayne Roberts 0:6b3ac9c5a042 65
Wayne Roberts 0:6b3ac9c5a042 66 case DR_3: // SF7 - BW125
Wayne Roberts 0:6b3ac9c5a042 67 case DR_11: // SF9 - BW500
Wayne Roberts 0:6b3ac9c5a042 68 return 10;
Wayne Roberts 0:6b3ac9c5a042 69
Wayne Roberts 0:6b3ac9c5a042 70 case DR_4: // SF8 - BW500
Wayne Roberts 0:6b3ac9c5a042 71 case DR_12: // SF8 - BW500
Wayne Roberts 0:6b3ac9c5a042 72 return 14;
Wayne Roberts 0:6b3ac9c5a042 73
Wayne Roberts 0:6b3ac9c5a042 74 case DR_13: // SF7 - BW500
Wayne Roberts 0:6b3ac9c5a042 75 return 16;
Wayne Roberts 0:6b3ac9c5a042 76
Wayne Roberts 0:6b3ac9c5a042 77 default:
Wayne Roberts 0:6b3ac9c5a042 78 return 0; // LoRa 125 kHz
Wayne Roberts 0:6b3ac9c5a042 79 }
Wayne Roberts 0:6b3ac9c5a042 80 }
Wayne Roberts 0:6b3ac9c5a042 81
Wayne Roberts 0:6b3ac9c5a042 82 void region_rx1_setup(uint8_t ch)
Wayne Roberts 0:6b3ac9c5a042 83 {
Wayne Roberts 0:6b3ac9c5a042 84 int8_t datarate = datarateOffsets[LoRaMacParams.ChannelsDatarate][LoRaMacParams.Rx1DrOffset];
Wayne Roberts 0:6b3ac9c5a042 85 if( datarate < 0 )
Wayne Roberts 0:6b3ac9c5a042 86 {
Wayne Roberts 0:6b3ac9c5a042 87 datarate = DR_0;
Wayne Roberts 0:6b3ac9c5a042 88 }
Wayne Roberts 0:6b3ac9c5a042 89
Wayne Roberts 0:6b3ac9c5a042 90 RxWindowSetup(
Wayne Roberts 0:6b3ac9c5a042 91 LORAMAC_FIRST_RX1_CHANNEL + ( ch % 8 ) * LORAMAC_STEPWIDTH_RX1_CHANNEL,
Wayne Roberts 0:6b3ac9c5a042 92 datarate,
Wayne Roberts 0:6b3ac9c5a042 93 region_GetRxBandwidth(datarate),
Wayne Roberts 0:6b3ac9c5a042 94 region_GetRxSymbolTimeout(datarate)
Wayne Roberts 0:6b3ac9c5a042 95 );
Wayne Roberts 0:6b3ac9c5a042 96 }
Wayne Roberts 0:6b3ac9c5a042 97
Wayne Roberts 0:6b3ac9c5a042 98 bool ValidateChannelMask( uint16_t* channelsMask )
Wayne Roberts 0:6b3ac9c5a042 99 {
Wayne Roberts 0:6b3ac9c5a042 100 bool chanMaskState = false;
Wayne Roberts 0:6b3ac9c5a042 101 uint16_t block1 = 0;
Wayne Roberts 0:6b3ac9c5a042 102 uint16_t block2 = 0;
Wayne Roberts 0:6b3ac9c5a042 103 uint8_t index = 0;
Wayne Roberts 0:6b3ac9c5a042 104
Wayne Roberts 0:6b3ac9c5a042 105 for( uint8_t i = 0; i < 4; i++ )
Wayne Roberts 0:6b3ac9c5a042 106 {
Wayne Roberts 0:6b3ac9c5a042 107 block1 = channelsMask[i] & 0x00FF;
Wayne Roberts 0:6b3ac9c5a042 108 block2 = channelsMask[i] & 0xFF00;
Wayne Roberts 0:6b3ac9c5a042 109
Wayne Roberts 0:6b3ac9c5a042 110 if( ( CountBits( block1, 16 ) > 5 ) && ( chanMaskState == false ) )
Wayne Roberts 0:6b3ac9c5a042 111 {
Wayne Roberts 0:6b3ac9c5a042 112 channelsMask[i] &= block1;
Wayne Roberts 0:6b3ac9c5a042 113 channelsMask[4] = 1 << ( i * 2 );
Wayne Roberts 0:6b3ac9c5a042 114 chanMaskState = true;
Wayne Roberts 0:6b3ac9c5a042 115 index = i;
Wayne Roberts 0:6b3ac9c5a042 116 }
Wayne Roberts 0:6b3ac9c5a042 117 else if( ( CountBits( block2, 16 ) > 5 ) && ( chanMaskState == false ) )
Wayne Roberts 0:6b3ac9c5a042 118 {
Wayne Roberts 0:6b3ac9c5a042 119 channelsMask[i] &= block2;
Wayne Roberts 0:6b3ac9c5a042 120 channelsMask[4] = 1 << ( i * 2 + 1 );
Wayne Roberts 0:6b3ac9c5a042 121 chanMaskState = true;
Wayne Roberts 0:6b3ac9c5a042 122 index = i;
Wayne Roberts 0:6b3ac9c5a042 123 }
Wayne Roberts 0:6b3ac9c5a042 124 }
Wayne Roberts 0:6b3ac9c5a042 125
Wayne Roberts 0:6b3ac9c5a042 126 // Do only change the channel mask, if we have found a valid block.
Wayne Roberts 0:6b3ac9c5a042 127 if( chanMaskState == true )
Wayne Roberts 0:6b3ac9c5a042 128 {
Wayne Roberts 0:6b3ac9c5a042 129 for( uint8_t i = 0; i < 4; i++ )
Wayne Roberts 0:6b3ac9c5a042 130 {
Wayne Roberts 0:6b3ac9c5a042 131 if( i != index )
Wayne Roberts 0:6b3ac9c5a042 132 {
Wayne Roberts 0:6b3ac9c5a042 133 channelsMask[i] = 0;
Wayne Roberts 0:6b3ac9c5a042 134 }
Wayne Roberts 0:6b3ac9c5a042 135 }
Wayne Roberts 0:6b3ac9c5a042 136 }
Wayne Roberts 0:6b3ac9c5a042 137 return chanMaskState;
Wayne Roberts 0:6b3ac9c5a042 138 }
Wayne Roberts 0:6b3ac9c5a042 139
Wayne Roberts 0:6b3ac9c5a042 140 void ReenableChannels( uint16_t mask, uint16_t* channelsMask )
Wayne Roberts 0:6b3ac9c5a042 141 {
Wayne Roberts 0:6b3ac9c5a042 142 uint16_t blockMask = mask;
Wayne Roberts 0:6b3ac9c5a042 143
Wayne Roberts 0:6b3ac9c5a042 144 for( uint8_t i = 0, j = 0; i < 4; i++, j += 2 )
Wayne Roberts 0:6b3ac9c5a042 145 {
Wayne Roberts 0:6b3ac9c5a042 146 channelsMask[i] = 0;
Wayne Roberts 0:6b3ac9c5a042 147 if( ( blockMask & ( 1 << j ) ) != 0 )
Wayne Roberts 0:6b3ac9c5a042 148 {
Wayne Roberts 0:6b3ac9c5a042 149 channelsMask[i] |= 0x00FF;
Wayne Roberts 0:6b3ac9c5a042 150 }
Wayne Roberts 0:6b3ac9c5a042 151 if( ( blockMask & ( 1 << ( j + 1 ) ) ) != 0 )
Wayne Roberts 0:6b3ac9c5a042 152 {
Wayne Roberts 0:6b3ac9c5a042 153 channelsMask[i] |= 0xFF00;
Wayne Roberts 0:6b3ac9c5a042 154 }
Wayne Roberts 0:6b3ac9c5a042 155 }
Wayne Roberts 0:6b3ac9c5a042 156 channelsMask[4] = blockMask;
Wayne Roberts 0:6b3ac9c5a042 157 channelsMask[5] = 0x0000;
Wayne Roberts 0:6b3ac9c5a042 158 }
Wayne Roberts 0:6b3ac9c5a042 159
Wayne Roberts 0:6b3ac9c5a042 160 void region_adr_request(adr_t* adr)
Wayne Roberts 0:6b3ac9c5a042 161 {
Wayne Roberts 0:6b3ac9c5a042 162 if( adr->chMaskCntl == 6 )
Wayne Roberts 0:6b3ac9c5a042 163 {
Wayne Roberts 0:6b3ac9c5a042 164 // Enable all 125 kHz channels
Wayne Roberts 0:6b3ac9c5a042 165 adr->channelsMask[0] = 0xFFFF;
Wayne Roberts 0:6b3ac9c5a042 166 adr->channelsMask[1] = 0xFFFF;
Wayne Roberts 0:6b3ac9c5a042 167 adr->channelsMask[2] = 0xFFFF;
Wayne Roberts 0:6b3ac9c5a042 168 adr->channelsMask[3] = 0xFFFF;
Wayne Roberts 0:6b3ac9c5a042 169 // Apply chMask to channels 64 to 71
Wayne Roberts 0:6b3ac9c5a042 170 adr->channelsMask[4] = adr->chMask;
Wayne Roberts 0:6b3ac9c5a042 171 }
Wayne Roberts 0:6b3ac9c5a042 172 else if( adr->chMaskCntl == 7 )
Wayne Roberts 0:6b3ac9c5a042 173 {
Wayne Roberts 0:6b3ac9c5a042 174 // Disable all 125 kHz channels
Wayne Roberts 0:6b3ac9c5a042 175 adr->channelsMask[0] = 0x0000;
Wayne Roberts 0:6b3ac9c5a042 176 adr->channelsMask[1] = 0x0000;
Wayne Roberts 0:6b3ac9c5a042 177 adr->channelsMask[2] = 0x0000;
Wayne Roberts 0:6b3ac9c5a042 178 adr->channelsMask[3] = 0x0000;
Wayne Roberts 0:6b3ac9c5a042 179 // Apply chMask to channels 64 to 71
Wayne Roberts 0:6b3ac9c5a042 180 adr->channelsMask[4] = adr->chMask;
Wayne Roberts 0:6b3ac9c5a042 181 }
Wayne Roberts 0:6b3ac9c5a042 182 else if( adr->chMaskCntl == 5 )
Wayne Roberts 0:6b3ac9c5a042 183 {
Wayne Roberts 0:6b3ac9c5a042 184 // RFU
Wayne Roberts 0:6b3ac9c5a042 185 adr->status &= 0xFE; // Channel mask KO
Wayne Roberts 0:6b3ac9c5a042 186 }
Wayne Roberts 0:6b3ac9c5a042 187 else
Wayne Roberts 0:6b3ac9c5a042 188 {
Wayne Roberts 0:6b3ac9c5a042 189 adr->channelsMask[adr->chMaskCntl] = adr->chMask;
Wayne Roberts 0:6b3ac9c5a042 190
Wayne Roberts 0:6b3ac9c5a042 191 // FCC 15.247 paragraph F mandates to hop on at least 2 125 kHz channels
Wayne Roberts 0:6b3ac9c5a042 192 if( ( adr->datarate < DR_4 ) && ( CountNbEnabled125kHzChannels( adr->channelsMask ) < 2 ) )
Wayne Roberts 0:6b3ac9c5a042 193 {
Wayne Roberts 0:6b3ac9c5a042 194 adr->status &= 0xFE; // Channel mask KO
Wayne Roberts 0:6b3ac9c5a042 195 }
Wayne Roberts 0:6b3ac9c5a042 196
Wayne Roberts 0:6b3ac9c5a042 197 #if defined( USE_BAND_915_HYBRID )
Wayne Roberts 0:6b3ac9c5a042 198 if( ValidateChannelMask( adr->channelsMask ) == false )
Wayne Roberts 0:6b3ac9c5a042 199 {
Wayne Roberts 0:6b3ac9c5a042 200 adr->status &= 0xFE; // Channel mask KO
Wayne Roberts 0:6b3ac9c5a042 201 }
Wayne Roberts 0:6b3ac9c5a042 202 #endif
Wayne Roberts 0:6b3ac9c5a042 203 }
Wayne Roberts 0:6b3ac9c5a042 204
Wayne Roberts 0:6b3ac9c5a042 205
Wayne Roberts 0:6b3ac9c5a042 206 if ((adr->status & 0x07) == 0x07) {
Wayne Roberts 0:6b3ac9c5a042 207 // Reset ChannelsMaskRemaining to the new ChannelsMask
Wayne Roberts 0:6b3ac9c5a042 208 ChannelsMaskRemaining[0] &= adr->channelsMask[0];
Wayne Roberts 0:6b3ac9c5a042 209 ChannelsMaskRemaining[1] &= adr->channelsMask[1];
Wayne Roberts 0:6b3ac9c5a042 210 ChannelsMaskRemaining[2] &= adr->channelsMask[2];
Wayne Roberts 0:6b3ac9c5a042 211 ChannelsMaskRemaining[3] &= adr->channelsMask[3];
Wayne Roberts 0:6b3ac9c5a042 212 ChannelsMaskRemaining[4] = adr->channelsMask[4];
Wayne Roberts 0:6b3ac9c5a042 213 ChannelsMaskRemaining[5] = adr->channelsMask[5];
Wayne Roberts 0:6b3ac9c5a042 214 }
Wayne Roberts 0:6b3ac9c5a042 215 }
Wayne Roberts 0:6b3ac9c5a042 216
Wayne Roberts 0:6b3ac9c5a042 217 void
Wayne Roberts 0:6b3ac9c5a042 218 region_adr_next_dr(int8_t* dr, bool update)
Wayne Roberts 0:6b3ac9c5a042 219 {
Wayne Roberts 0:6b3ac9c5a042 220 if( ( *dr > LORAMAC_TX_MIN_DATARATE ) && ( *dr == DR_8 ) )
Wayne Roberts 0:6b3ac9c5a042 221 {
Wayne Roberts 0:6b3ac9c5a042 222 *dr = DR_4;
Wayne Roberts 0:6b3ac9c5a042 223 }
Wayne Roberts 0:6b3ac9c5a042 224 else if( *dr > LORAMAC_TX_MIN_DATARATE )
Wayne Roberts 0:6b3ac9c5a042 225 {
Wayne Roberts 0:6b3ac9c5a042 226 (*dr)--;
Wayne Roberts 0:6b3ac9c5a042 227 }
Wayne Roberts 0:6b3ac9c5a042 228 if( *dr == LORAMAC_TX_MIN_DATARATE )
Wayne Roberts 0:6b3ac9c5a042 229 {
Wayne Roberts 0:6b3ac9c5a042 230 if( update == true )
Wayne Roberts 0:6b3ac9c5a042 231 {
Wayne Roberts 0:6b3ac9c5a042 232 #if defined( USE_BAND_915 )
Wayne Roberts 0:6b3ac9c5a042 233 // Re-enable default channels
Wayne Roberts 0:6b3ac9c5a042 234 memcpy( ( uint8_t* )LoRaMacParams.ChannelsMask, ( uint8_t* )LoRaMacParamsDefaults.ChannelsMask, sizeof( LoRaMacParams.ChannelsMask ) );
Wayne Roberts 0:6b3ac9c5a042 235 #else // defined( USE_BAND_915_HYBRID )
Wayne Roberts 0:6b3ac9c5a042 236 // Re-enable default channels
Wayne Roberts 0:6b3ac9c5a042 237 ReenableChannels( LoRaMacParamsDefaults.ChannelsMask[4], LoRaMacParams.ChannelsMask );
Wayne Roberts 0:6b3ac9c5a042 238 #endif
Wayne Roberts 0:6b3ac9c5a042 239 }
Wayne Roberts 0:6b3ac9c5a042 240 }
Wayne Roberts 0:6b3ac9c5a042 241 }
Wayne Roberts 0:6b3ac9c5a042 242
Wayne Roberts 0:6b3ac9c5a042 243 uint8_t CountNbEnabled125kHzChannels( uint16_t *channelsMask )
Wayne Roberts 0:6b3ac9c5a042 244 {
Wayne Roberts 0:6b3ac9c5a042 245 uint8_t nb125kHzChannels = 0;
Wayne Roberts 0:6b3ac9c5a042 246
Wayne Roberts 0:6b3ac9c5a042 247 for( uint8_t i = 0, k = 0; i < LORA_MAX_NB_CHANNELS - 8; i += 16, k++ )
Wayne Roberts 0:6b3ac9c5a042 248 {
Wayne Roberts 0:6b3ac9c5a042 249 nb125kHzChannels += CountBits( channelsMask[k], 16 );
Wayne Roberts 0:6b3ac9c5a042 250 }
Wayne Roberts 0:6b3ac9c5a042 251
Wayne Roberts 0:6b3ac9c5a042 252 return nb125kHzChannels;
Wayne Roberts 0:6b3ac9c5a042 253 }
Wayne Roberts 0:6b3ac9c5a042 254
Wayne Roberts 0:6b3ac9c5a042 255 static bool SetNextChannel( )
Wayne Roberts 0:6b3ac9c5a042 256 {
Wayne Roberts 0:6b3ac9c5a042 257 uint8_t nbEnabledChannels = 0;
Wayne Roberts 0:6b3ac9c5a042 258 uint8_t enabledChannels[LORA_MAX_NB_CHANNELS];
Wayne Roberts 0:6b3ac9c5a042 259
Wayne Roberts 0:6b3ac9c5a042 260 memset( enabledChannels, 0, LORA_MAX_NB_CHANNELS );
Wayne Roberts 0:6b3ac9c5a042 261
Wayne Roberts 0:6b3ac9c5a042 262 if( CountNbEnabled125kHzChannels( ChannelsMaskRemaining ) == 0 )
Wayne Roberts 0:6b3ac9c5a042 263 { // Restore default channels
Wayne Roberts 0:6b3ac9c5a042 264 memcpy( ( uint8_t* ) ChannelsMaskRemaining, ( uint8_t* ) LoRaMacParams.ChannelsMask, 8 );
Wayne Roberts 0:6b3ac9c5a042 265 }
Wayne Roberts 0:6b3ac9c5a042 266 if( ( LoRaMacParams.ChannelsDatarate >= DR_4 ) && ( ( ChannelsMaskRemaining[4] & 0x00FF ) == 0 ) )
Wayne Roberts 0:6b3ac9c5a042 267 { // Make sure, that the channels are activated
Wayne Roberts 0:6b3ac9c5a042 268 ChannelsMaskRemaining[4] = LoRaMacParams.ChannelsMask[4];
Wayne Roberts 0:6b3ac9c5a042 269 }
Wayne Roberts 0:6b3ac9c5a042 270
Wayne Roberts 0:6b3ac9c5a042 271 // Search how many channels are enabled
Wayne Roberts 0:6b3ac9c5a042 272 for( uint8_t i = 0, k = 0; i < LORA_MAX_NB_CHANNELS; i += 16, k++ )
Wayne Roberts 0:6b3ac9c5a042 273 {
Wayne Roberts 0:6b3ac9c5a042 274 for( uint8_t j = 0; j < 16; j++ )
Wayne Roberts 0:6b3ac9c5a042 275 {
Wayne Roberts 0:6b3ac9c5a042 276 if( ( ChannelsMaskRemaining[k] & ( 1 << j ) ) != 0 )
Wayne Roberts 0:6b3ac9c5a042 277 {
Wayne Roberts 0:6b3ac9c5a042 278 if( Channels[i + j].FreqHz == 0 )
Wayne Roberts 0:6b3ac9c5a042 279 { // Check if the channel is enabled
Wayne Roberts 0:6b3ac9c5a042 280 continue;
Wayne Roberts 0:6b3ac9c5a042 281 }
Wayne Roberts 0:6b3ac9c5a042 282 if( ( ( Channels[i + j].DrRange.Fields.Min <= LoRaMacParams.ChannelsDatarate ) &&
Wayne Roberts 0:6b3ac9c5a042 283 ( LoRaMacParams.ChannelsDatarate <= Channels[i + j].DrRange.Fields.Max ) ) == false )
Wayne Roberts 0:6b3ac9c5a042 284 { // Check if the current channel selection supports the given datarate
Wayne Roberts 0:6b3ac9c5a042 285 continue;
Wayne Roberts 0:6b3ac9c5a042 286 }
Wayne Roberts 0:6b3ac9c5a042 287 enabledChannels[nbEnabledChannels++] = i + j;
Wayne Roberts 0:6b3ac9c5a042 288 }
Wayne Roberts 0:6b3ac9c5a042 289 }
Wayne Roberts 0:6b3ac9c5a042 290 }
Wayne Roberts 0:6b3ac9c5a042 291
Wayne Roberts 0:6b3ac9c5a042 292 if( nbEnabledChannels > 0 )
Wayne Roberts 0:6b3ac9c5a042 293 {
Wayne Roberts 0:6b3ac9c5a042 294 Channel = enabledChannels[random_at_most( nbEnabledChannels - 1 )];
Wayne Roberts 0:6b3ac9c5a042 295 if( Channel < ( LORA_MAX_NB_CHANNELS - 8 ) )
Wayne Roberts 0:6b3ac9c5a042 296 {
Wayne Roberts 0:6b3ac9c5a042 297 DisableChannelInMask( Channel, ChannelsMaskRemaining );
Wayne Roberts 0:6b3ac9c5a042 298 }
Wayne Roberts 0:6b3ac9c5a042 299 return true;
Wayne Roberts 0:6b3ac9c5a042 300 }
Wayne Roberts 0:6b3ac9c5a042 301 else
Wayne Roberts 0:6b3ac9c5a042 302 {
Wayne Roberts 0:6b3ac9c5a042 303 // Datarate not supported by any channel
Wayne Roberts 0:6b3ac9c5a042 304 return false;
Wayne Roberts 0:6b3ac9c5a042 305 }
Wayne Roberts 0:6b3ac9c5a042 306 }
Wayne Roberts 0:6b3ac9c5a042 307
Wayne Roberts 0:6b3ac9c5a042 308 void region_ScheduleTx( )
Wayne Roberts 0:6b3ac9c5a042 309 {
Wayne Roberts 0:6b3ac9c5a042 310 // Select channel
Wayne Roberts 0:6b3ac9c5a042 311 while( SetNextChannel() == false )
Wayne Roberts 0:6b3ac9c5a042 312 {
Wayne Roberts 0:6b3ac9c5a042 313 // Set the default datarate
Wayne Roberts 0:6b3ac9c5a042 314 LoRaMacParams.ChannelsDatarate = LoRaMacParamsDefaults.ChannelsDatarate;
Wayne Roberts 0:6b3ac9c5a042 315 }
Wayne Roberts 0:6b3ac9c5a042 316
Wayne Roberts 0:6b3ac9c5a042 317 //MAC_PRINTF("ch%u ", Channel);
Wayne Roberts 0:6b3ac9c5a042 318 SendFrameOnChannel( Channel );
Wayne Roberts 0:6b3ac9c5a042 319 }
Wayne Roberts 0:6b3ac9c5a042 320
Wayne Roberts 0:6b3ac9c5a042 321 void region_tx_setup(int8_t dbm, uint8_t pktLen)
Wayne Roberts 0:6b3ac9c5a042 322 {
Wayne Roberts 0:6b3ac9c5a042 323 int8_t datarate = Datarates[LoRaMacParams.ChannelsDatarate];
Wayne Roberts 0:6b3ac9c5a042 324
Wayne Roberts 0:6b3ac9c5a042 325 //MAC_PRINTF("txsetup sf%d dr%u ", datarate, LoRaMacParams.ChannelsDatarate);
Wayne Roberts 0:6b3ac9c5a042 326
Wayne Roberts 0:6b3ac9c5a042 327 if( LoRaMacParams.ChannelsDatarate >= DR_4 )
Wayne Roberts 0:6b3ac9c5a042 328 { // High speed LoRa channel BW500 kHz
Wayne Roberts 0:6b3ac9c5a042 329 Radio::SetTxConfig( MODEM_LORA, dbm, 0, 2, datarate, 1, 8, false, true, false);
Wayne Roberts 0:6b3ac9c5a042 330 //TxTimeOnAir_us = Radio.TimeOnAir_us( MODEM_LORA, pktLen );
Wayne Roberts 0:6b3ac9c5a042 331 }
Wayne Roberts 0:6b3ac9c5a042 332 else
Wayne Roberts 0:6b3ac9c5a042 333 { // Normal LoRa channel
Wayne Roberts 0:6b3ac9c5a042 334 Radio::SetTxConfig( MODEM_LORA, dbm, 0, 0, datarate, 1, 8, false, true, false);
Wayne Roberts 0:6b3ac9c5a042 335 //TxTimeOnAir_us = Radio.TimeOnAir_us( MODEM_LORA, pktLen );
Wayne Roberts 0:6b3ac9c5a042 336 }
Wayne Roberts 0:6b3ac9c5a042 337 }
Wayne Roberts 0:6b3ac9c5a042 338
Wayne Roberts 0:6b3ac9c5a042 339 void region_mac_init()
Wayne Roberts 0:6b3ac9c5a042 340 {
Wayne Roberts 0:6b3ac9c5a042 341 #if defined( USE_BAND_915 )
Wayne Roberts 0:6b3ac9c5a042 342 LoRaMacParamsDefaults.ChannelsMask[0] = 0xFFFF;
Wayne Roberts 0:6b3ac9c5a042 343 LoRaMacParamsDefaults.ChannelsMask[1] = 0xFFFF;
Wayne Roberts 0:6b3ac9c5a042 344 LoRaMacParamsDefaults.ChannelsMask[2] = 0xFFFF;
Wayne Roberts 0:6b3ac9c5a042 345 LoRaMacParamsDefaults.ChannelsMask[3] = 0xFFFF;
Wayne Roberts 0:6b3ac9c5a042 346 LoRaMacParamsDefaults.ChannelsMask[4] = 0x00FF;
Wayne Roberts 0:6b3ac9c5a042 347 LoRaMacParamsDefaults.ChannelsMask[5] = 0x0000;
Wayne Roberts 0:6b3ac9c5a042 348 #elif defined( USE_BAND_915_HYBRID )
Wayne Roberts 0:6b3ac9c5a042 349 LoRaMacParamsDefaults.ChannelsMask[0] = 0x00FF;
Wayne Roberts 0:6b3ac9c5a042 350 LoRaMacParamsDefaults.ChannelsMask[1] = 0x0000;
Wayne Roberts 0:6b3ac9c5a042 351 LoRaMacParamsDefaults.ChannelsMask[2] = 0x0000;
Wayne Roberts 0:6b3ac9c5a042 352 LoRaMacParamsDefaults.ChannelsMask[3] = 0x0000;
Wayne Roberts 0:6b3ac9c5a042 353 LoRaMacParamsDefaults.ChannelsMask[4] = 0x0001;
Wayne Roberts 0:6b3ac9c5a042 354 LoRaMacParamsDefaults.ChannelsMask[5] = 0x0000;
Wayne Roberts 0:6b3ac9c5a042 355 #endif
Wayne Roberts 0:6b3ac9c5a042 356
Wayne Roberts 0:6b3ac9c5a042 357 // 125 kHz channels
Wayne Roberts 0:6b3ac9c5a042 358 for( uint8_t i = 0; i < LORA_MAX_NB_CHANNELS - 8; i++ )
Wayne Roberts 0:6b3ac9c5a042 359 {
Wayne Roberts 0:6b3ac9c5a042 360 Channels[i].FreqHz = 902.3e6 + i * 200e3;
Wayne Roberts 0:6b3ac9c5a042 361 Channels[i].DrRange.Value = ( DR_3 << 4 ) | DR_0;
Wayne Roberts 0:6b3ac9c5a042 362 Channels[i].Band = 0;
Wayne Roberts 0:6b3ac9c5a042 363 }
Wayne Roberts 0:6b3ac9c5a042 364 // 500 kHz channels
Wayne Roberts 0:6b3ac9c5a042 365 for( uint8_t i = LORA_MAX_NB_CHANNELS - 8; i < LORA_MAX_NB_CHANNELS; i++ )
Wayne Roberts 0:6b3ac9c5a042 366 {
Wayne Roberts 0:6b3ac9c5a042 367 Channels[i].FreqHz = 903.0e6 + ( i - ( LORA_MAX_NB_CHANNELS - 8 ) ) * 1.6e6;
Wayne Roberts 0:6b3ac9c5a042 368 Channels[i].DrRange.Value = ( DR_4 << 4 ) | DR_4;
Wayne Roberts 0:6b3ac9c5a042 369 Channels[i].Band = 0;
Wayne Roberts 0:6b3ac9c5a042 370 }
Wayne Roberts 0:6b3ac9c5a042 371 }
Wayne Roberts 0:6b3ac9c5a042 372
Wayne Roberts 0:6b3ac9c5a042 373 void region_session_start(LoRaMacEventInfoStatus_t status) { }
Wayne Roberts 0:6b3ac9c5a042 374
Wayne Roberts 0:6b3ac9c5a042 375 #endif /* USE_BAND_915_HYBRID || USE_BAND_915 */