RadioLib
Universal wireless communication library for Arduino
LoRaWAN.h
1 #if !defined(_RADIOLIB_LORAWAN_H) && !RADIOLIB_EXCLUDE_LORAWAN
2 #define _RADIOLIB_LORAWAN_H
3 
4 #include "../../TypeDef.h"
5 #include "../PhysicalLayer/PhysicalLayer.h"
6 #include "../../utils/Cryptography.h"
7 
8 // activation mode
9 #define RADIOLIB_LORAWAN_MODE_OTAA (0x07AA)
10 #define RADIOLIB_LORAWAN_MODE_ABP (0x0AB9)
11 #define RADIOLIB_LORAWAN_MODE_NONE (0x0000)
12 
13 // operation mode
14 #define RADIOLIB_LORAWAN_CLASS_A (0x0A)
15 #define RADIOLIB_LORAWAN_CLASS_B (0x0B)
16 #define RADIOLIB_LORAWAN_CLASS_C (0x0C)
17 
18 // preamble format
19 #define RADIOLIB_LORAWAN_LORA_SYNC_WORD (0x34)
20 #define RADIOLIB_LORAWAN_LORA_PREAMBLE_LEN (8)
21 #define RADIOLIB_LORAWAN_GFSK_SYNC_WORD (0xC194C1)
22 #define RADIOLIB_LORAWAN_GFSK_PREAMBLE_LEN (5)
23 #define RADIOLIB_LORAWAN_LR_FHSS_SYNC_WORD (0x2C0F7995)
24 
25 // MAC header field encoding MSB LSB DESCRIPTION
26 #define RADIOLIB_LORAWAN_MHDR_MTYPE_JOIN_REQUEST (0x00 << 5) // 7 5 message type: join request
27 #define RADIOLIB_LORAWAN_MHDR_MTYPE_JOIN_ACCEPT (0x01 << 5) // 7 5 join accept
28 #define RADIOLIB_LORAWAN_MHDR_MTYPE_UNCONF_DATA_UP (0x02 << 5) // 7 5 unconfirmed data up
29 #define RADIOLIB_LORAWAN_MHDR_MTYPE_UNCONF_DATA_DOWN (0x03 << 5) // 7 5 unconfirmed data down
30 #define RADIOLIB_LORAWAN_MHDR_MTYPE_CONF_DATA_UP (0x04 << 5) // 7 5 confirmed data up
31 #define RADIOLIB_LORAWAN_MHDR_MTYPE_CONF_DATA_DOWN (0x05 << 5) // 7 5 confirmed data down
32 #define RADIOLIB_LORAWAN_MHDR_MTYPE_PROPRIETARY (0x07 << 5) // 7 5 proprietary
33 #define RADIOLIB_LORAWAN_MHDR_MTYPE_MASK (0x07 << 5) // 7 5 bitmask of all possible options
34 #define RADIOLIB_LORAWAN_MHDR_MAJOR_R1 (0x00 << 0) // 1 0 major version: LoRaWAN R1
35 
36 // frame control field encoding
37 #define RADIOLIB_LORAWAN_FCTRL_ADR_ENABLED (0x01 << 7) // 7 7 adaptive data rate: enabled
38 #define RADIOLIB_LORAWAN_FCTRL_ADR_DISABLED (0x00 << 7) // 7 7 disabled
39 #define RADIOLIB_LORAWAN_FCTRL_ADR_ACK_REQ (0x01 << 6) // 6 6 adaptive data rate ACK request
40 #define RADIOLIB_LORAWAN_FCTRL_ACK (0x01 << 5) // 5 5 confirmed message acknowledge
41 #define RADIOLIB_LORAWAN_FCTRL_FRAME_PENDING (0x01 << 4) // 4 4 downlink frame is pending
42 
43 // fPort field
44 #define RADIOLIB_LORAWAN_FPORT_MAC_COMMAND (0x00 << 0) // 7 0 payload contains MAC commands only
45 #define RADIOLIB_LORAWAN_FPORT_PAYLOAD_MIN (0x01 << 0) // 7 0 start of user-allowed fPort range
46 #define RADIOLIB_LORAWAN_FPORT_PAYLOAD_MAX (0xDF << 0) // 7 0 end of user-allowed fPort range
47 #define RADIOLIB_LORAWAN_FPORT_TS009 (0xE0 << 0) // 7 0 fPort used for TS009 testing
48 #define RADIOLIB_LORAWAN_FPORT_TS011 (0xE2 << 0) // 7 0 fPort used for TS011 Forwarding
49 #define RADIOLIB_LORAWAN_FPORT_RESERVED (0xE0 << 0) // 7 0 fPort values equal to and larger than this are reserved
50 
51 // data rate encoding
52 #define RADIOLIB_LORAWAN_DATA_RATE_MODEM (0x03 << 6) // 7 6 modem mask
53 #define RADIOLIB_LORAWAN_DATA_RATE_LORA (0x00 << 6) // 7 6 use LoRa modem
54 #define RADIOLIB_LORAWAN_DATA_RATE_FSK (0x01 << 6) // 7 6 use FSK modem
55 #define RADIOLIB_LORAWAN_DATA_RATE_LR_FHSS (0x02 << 6) // 7 6 use LR-FHSS modem
56 #define RADIOLIB_LORAWAN_DATA_RATE_SF (0x07 << 3) // 5 3 LoRa spreading factor mask
57 #define RADIOLIB_LORAWAN_DATA_RATE_SF_12 (0x05 << 3) // 5 3 LoRa spreading factor: SF12
58 #define RADIOLIB_LORAWAN_DATA_RATE_SF_11 (0x04 << 3) // 5 3 SF11
59 #define RADIOLIB_LORAWAN_DATA_RATE_SF_10 (0x03 << 3) // 5 3 SF10
60 #define RADIOLIB_LORAWAN_DATA_RATE_SF_9 (0x02 << 3) // 5 3 SF9
61 #define RADIOLIB_LORAWAN_DATA_RATE_SF_8 (0x01 << 3) // 5 3 SF8
62 #define RADIOLIB_LORAWAN_DATA_RATE_SF_7 (0x00 << 3) // 5 3 SF7
63 #define RADIOLIB_LORAWAN_DATA_RATE_BW (0x03 << 1) // 2 1 bandwidth mask
64 #define RADIOLIB_LORAWAN_DATA_RATE_BW_125_KHZ (0x00 << 1) // 2 1 125 kHz
65 #define RADIOLIB_LORAWAN_DATA_RATE_BW_250_KHZ (0x01 << 1) // 2 1 250 kHz
66 #define RADIOLIB_LORAWAN_DATA_RATE_BW_500_KHZ (0x02 << 1) // 2 1 LoRa bandwidth: 500 kHz
67 #define RADIOLIB_LORAWAN_DATA_RATE_BW_137_KHZ (0x00 << 1) // 2 1 137 kHz
68 #define RADIOLIB_LORAWAN_DATA_RATE_BW_336_KHZ (0x01 << 1) // 2 1 336 kHz
69 #define RADIOLIB_LORAWAN_DATA_RATE_BW_1523_KHZ (0x02 << 1) // 2 1 LR-FHSS bandwidth: 1523 kHz
70 #define RADIOLIB_LORAWAN_DATA_RATE_CR (0x01 << 0) // 0 0 coding rate mask
71 #define RADIOLIB_LORAWAN_DATA_RATE_CR_1_3 (0x00 << 0) // 0 0 LR-FHSS coding rate: 1/3
72 #define RADIOLIB_LORAWAN_DATA_RATE_CR_2_3 (0x01 << 0) // 0 0 2/3
73 #define RADIOLIB_LORAWAN_DATA_RATE_UNUSED (0xFF << 0) // 7 0 unused data rate
74 
75 // channels and channel plans
76 #define RADIOLIB_LORAWAN_UPLINK (0x00 << 0)
77 #define RADIOLIB_LORAWAN_DOWNLINK (0x01 << 0)
78 #define RADIOLIB_LORAWAN_DIR_RX2 (0x02 << 0)
79 #define RADIOLIB_LORAWAN_BAND_DYNAMIC (0)
80 #define RADIOLIB_LORAWAN_BAND_FIXED (1)
81 #define RADIOLIB_LORAWAN_CHANNEL_NUM_DATARATES (15)
82 #define RADIOLIB_LORAWAN_CHANNEL_INDEX_NONE (0xFF >> 0)
83 
84 // recommended default settings
85 #define RADIOLIB_LORAWAN_RECEIVE_DELAY_1_MS (1000)
86 #define RADIOLIB_LORAWAN_RECEIVE_DELAY_2_MS ((RADIOLIB_LORAWAN_RECEIVE_DELAY_1_MS) + 1000)
87 #define RADIOLIB_LORAWAN_RX1_DR_OFFSET (0)
88 #define RADIOLIB_LORAWAN_JOIN_ACCEPT_DELAY_1_MS (5000)
89 #define RADIOLIB_LORAWAN_JOIN_ACCEPT_DELAY_2_MS (6000)
90 #define RADIOLIB_LORAWAN_MAX_FCNT_GAP (16384)
91 #define RADIOLIB_LORAWAN_ADR_ACK_LIMIT_EXP (0x06)
92 #define RADIOLIB_LORAWAN_ADR_ACK_DELAY_EXP (0x05)
93 #define RADIOLIB_LORAWAN_RETRANSMIT_TIMEOUT_MIN_MS (1000)
94 #define RADIOLIB_LORAWAN_RETRANSMIT_TIMEOUT_MAX_MS (3000)
95 #define RADIOLIB_LORAWAN_POWER_STEP_SIZE_DBM (-2)
96 #define RADIOLIB_LORAWAN_REJOIN_MAX_COUNT_N (10) // send rejoin request 16384 uplinks
97 #define RADIOLIB_LORAWAN_REJOIN_MAX_TIME_N (15) // once every year, not actually implemented
98 
99 // join request message layout
100 #define RADIOLIB_LORAWAN_JOIN_REQUEST_LEN (23)
101 #define RADIOLIB_LORAWAN_JOIN_REQUEST_JOIN_EUI_POS (1)
102 #define RADIOLIB_LORAWAN_JOIN_REQUEST_DEV_EUI_POS (9)
103 #define RADIOLIB_LORAWAN_JOIN_REQUEST_DEV_NONCE_POS (17)
104 #define RADIOLIB_LORAWAN_JOIN_REQUEST_TYPE (0xFF)
105 #define RADIOLIB_LORAWAN_JOIN_REQUEST_TYPE_0 (0x00)
106 #define RADIOLIB_LORAWAN_JOIN_REQUEST_TYPE_1 (0x01)
107 #define RADIOLIB_LORAWAN_JOIN_REQUEST_TYPE_2 (0x02)
108 
109 // join accept message layout
110 #define RADIOLIB_LORAWAN_JOIN_ACCEPT_MAX_LEN (33)
111 #define RADIOLIB_LORAWAN_JOIN_ACCEPT_JOIN_NONCE_POS (1)
112 #define RADIOLIB_LORAWAN_JOIN_ACCEPT_HOME_NET_ID_POS (4)
113 #define RADIOLIB_LORAWAN_JOIN_ACCEPT_DEV_ADDR_POS (7)
114 #define RADIOLIB_LORAWAN_JOIN_ACCEPT_DL_SETTINGS_POS (11)
115 #define RADIOLIB_LORAWAN_JOIN_ACCEPT_RX_DELAY_POS (12)
116 #define RADIOLIB_LORAWAN_JOIN_ACCEPT_CFLIST_POS (13)
117 #define RADIOLIB_LORAWAN_JOIN_ACCEPT_CFLIST_LEN (16)
118 #define RADIOLIB_LORAWAN_JOIN_ACCEPT_CFLIST_TYPE_POS (RADIOLIB_LORAWAN_JOIN_ACCEPT_CFLIST_POS + RADIOLIB_LORAWAN_JOIN_ACCEPT_CFLIST_LEN - 1)
119 
120 // join accept key derivation layout
121 #define RADIOLIB_LORAWAN_JOIN_ACCEPT_AES_JOIN_NONCE_POS (1) // regular keys
122 #define RADIOLIB_LORAWAN_JOIN_ACCEPT_AES_JOIN_EUI_POS (4)
123 #define RADIOLIB_LORAWAN_JOIN_ACCEPT_AES_DEV_NONCE_POS (12)
124 #define RADIOLIB_LORAWAN_JOIN_ACCEPT_AES_DEV_ADDR_POS (1) // relay keys
125 
126 // join accept message variables
127 #define RADIOLIB_LORAWAN_JOIN_ACCEPT_R_1_0 (0x00 << 7) // 7 7 LoRaWAN revision: 1.0
128 #define RADIOLIB_LORAWAN_JOIN_ACCEPT_R_1_1 (0x01 << 7) // 7 7 1.1
129 #define RADIOLIB_LORAWAN_JOIN_ACCEPT_F_NWK_S_INT_KEY (0x01)
130 #define RADIOLIB_LORAWAN_JOIN_ACCEPT_APP_S_KEY (0x02)
131 #define RADIOLIB_LORAWAN_JOIN_ACCEPT_S_NWK_S_INT_KEY (0x03)
132 #define RADIOLIB_LORAWAN_JOIN_ACCEPT_NWK_S_ENC_KEY (0x04)
133 #define RADIOLIB_LORAWAN_JOIN_ACCEPT_JS_ENC_KEY (0x05)
134 #define RADIOLIB_LORAWAN_JOIN_ACCEPT_JS_INT_KEY (0x06)
135 #define RADIOLIB_LORAWAN_JOIN_ACCEPT_ROOT_WOR_S_KEY (0x01)
136 #define RADIOLIB_LORAWAN_JOIN_ACCEPT_WOR_S_INT_KEY (0x01)
137 #define RADIOLIB_LORAWAN_JOIN_ACCEPT_WOR_S_ENC_KEY (0x02)
138 
139 // frame header layout
140 #define RADIOLIB_LORAWAN_FHDR_LEN_START_OFFS (16)
141 #define RADIOLIB_LORAWAN_FHDR_DEV_ADDR_POS (RADIOLIB_LORAWAN_FHDR_LEN_START_OFFS + 1)
142 #define RADIOLIB_LORAWAN_FHDR_FCTRL_POS (RADIOLIB_LORAWAN_FHDR_LEN_START_OFFS + 5)
143 #define RADIOLIB_LORAWAN_FHDR_FCNT_POS (RADIOLIB_LORAWAN_FHDR_LEN_START_OFFS + 6)
144 #define RADIOLIB_LORAWAN_FHDR_FOPTS_POS (RADIOLIB_LORAWAN_FHDR_LEN_START_OFFS + 8)
145 #define RADIOLIB_LORAWAN_FHDR_FOPTS_LEN_MASK (0x0F)
146 #define RADIOLIB_LORAWAN_FHDR_FOPTS_MAX_LEN (15)
147 #define RADIOLIB_LORAWAN_FHDR_FPORT_POS(FOPTS) (RADIOLIB_LORAWAN_FHDR_LEN_START_OFFS + 8 + (FOPTS))
148 #define RADIOLIB_LORAWAN_FRAME_PAYLOAD_POS(FOPTS) (RADIOLIB_LORAWAN_FHDR_LEN_START_OFFS + 9 + (FOPTS))
149 #define RADIOLIB_LORAWAN_FRAME_LEN(PAYLOAD, FOPTS) (16 + 13 + (PAYLOAD) + (FOPTS))
150 
151 // payload encryption/MIC blocks common layout
152 #define RADIOLIB_LORAWAN_BLOCK_MAGIC_POS (0)
153 #define RADIOLIB_LORAWAN_BLOCK_CONF_FCNT_POS (1)
154 #define RADIOLIB_LORAWAN_BLOCK_DIR_POS (5)
155 #define RADIOLIB_LORAWAN_BLOCK_DEV_ADDR_POS (6)
156 #define RADIOLIB_LORAWAN_BLOCK_FCNT_POS (10)
157 
158 // payload encryption block layout
159 #define RADIOLIB_LORAWAN_ENC_BLOCK_MAGIC (0x01)
160 #define RADIOLIB_LORAWAN_ENC_BLOCK_COUNTER_ID_POS (4)
161 #define RADIOLIB_LORAWAN_ENC_BLOCK_COUNTER_POS (15)
162 
163 // payload MIC blocks layout
164 #define RADIOLIB_LORAWAN_MIC_BLOCK_MAGIC (0x49)
165 #define RADIOLIB_LORAWAN_MIC_BLOCK_LEN_POS (15)
166 #define RADIOLIB_LORAWAN_MIC_DATA_RATE_POS (3)
167 #define RADIOLIB_LORAWAN_MIC_CH_INDEX_POS (4)
168 
169 // maximum allowed dwell time on bands that implement dwell time limitations
170 #define RADIOLIB_LORAWAN_DWELL_TIME (400)
171 
172 // unused frame counter value
173 #define RADIOLIB_LORAWAN_FCNT_NONE (0xFFFFFFFF)
174 
175 // TR013 CSMA recommended values
176 #define RADIOLIB_LORAWAN_DIFS_DEFAULT (2)
177 #define RADIOLIB_LORAWAN_BACKOFF_MAX_DEFAULT (6)
178 #define RADIOLIB_LORAWAN_MAX_CHANGES_DEFAULT (4)
179 
180 // MAC commands
181 #define RADIOLIB_LORAWAN_NUM_MAC_COMMANDS (23)
182 
183 #define RADIOLIB_LORAWAN_MAC_RESET (0x01)
184 #define RADIOLIB_LORAWAN_MAC_LINK_CHECK (0x02)
185 #define RADIOLIB_LORAWAN_MAC_LINK_ADR (0x03)
186 #define RADIOLIB_LORAWAN_MAC_DUTY_CYCLE (0x04)
187 #define RADIOLIB_LORAWAN_MAC_RX_PARAM_SETUP (0x05)
188 #define RADIOLIB_LORAWAN_MAC_DEV_STATUS (0x06)
189 #define RADIOLIB_LORAWAN_MAC_NEW_CHANNEL (0x07)
190 #define RADIOLIB_LORAWAN_MAC_RX_TIMING_SETUP (0x08)
191 #define RADIOLIB_LORAWAN_MAC_TX_PARAM_SETUP (0x09)
192 #define RADIOLIB_LORAWAN_MAC_DL_CHANNEL (0x0A)
193 #define RADIOLIB_LORAWAN_MAC_REKEY (0x0B)
194 #define RADIOLIB_LORAWAN_MAC_ADR_PARAM_SETUP (0x0C)
195 #define RADIOLIB_LORAWAN_MAC_DEVICE_TIME (0x0D)
196 #define RADIOLIB_LORAWAN_MAC_FORCE_REJOIN (0x0E)
197 #define RADIOLIB_LORAWAN_MAC_REJOIN_PARAM_SETUP (0x0F)
198 #define RADIOLIB_LORAWAN_MAC_PROPRIETARY (0x80)
199 
200 // the length of internal MAC command queue - hopefully this is enough for most use cases
201 #define RADIOLIB_LORAWAN_MAC_COMMAND_QUEUE_SIZE (9)
202 
203 // the maximum number of simultaneously available channels
204 #define RADIOLIB_LORAWAN_NUM_AVAILABLE_CHANNELS (16)
205 
206 // maximum MAC command sizes
207 #define RADIOLIB_LORAWAN_MAX_MAC_COMMAND_LEN_DOWN (5)
208 #define RADIOLIB_LORAWAN_MAX_MAC_COMMAND_LEN_UP (2)
209 #define RADIOLIB_LORAWAN_MAX_NUM_ADR_COMMANDS (8)
210 
217  const uint8_t cid;
218 
220  const uint8_t lenDn;
221 
223  const uint8_t lenUp;
224 
226  const bool persist;
227 
229  const bool user;
230 };
231 
232 #define RADIOLIB_LORAWAN_MAC_COMMAND_NONE { .cid = 0, .lenDn = 0, .lenUp = 0, .persist = false, .user = false }
233 
234 constexpr LoRaWANMacCommand_t MacTable[RADIOLIB_LORAWAN_NUM_MAC_COMMANDS] = {
235  { RADIOLIB_LORAWAN_MAC_RESET, 1, 1, false, false },
236  { RADIOLIB_LORAWAN_MAC_LINK_CHECK, 2, 0, false, true },
237  { RADIOLIB_LORAWAN_MAC_LINK_ADR, 4, 1, false, false },
238  { RADIOLIB_LORAWAN_MAC_DUTY_CYCLE, 1, 0, false, false },
239  { RADIOLIB_LORAWAN_MAC_RX_PARAM_SETUP, 4, 1, true, false },
240  { RADIOLIB_LORAWAN_MAC_DEV_STATUS, 0, 2, false, false },
241  { RADIOLIB_LORAWAN_MAC_NEW_CHANNEL, 5, 1, false, false },
242  { RADIOLIB_LORAWAN_MAC_RX_TIMING_SETUP, 1, 0, true, false },
243  { RADIOLIB_LORAWAN_MAC_TX_PARAM_SETUP, 1, 0, true, false },
244  { RADIOLIB_LORAWAN_MAC_DL_CHANNEL, 4, 1, true, false },
245  { RADIOLIB_LORAWAN_MAC_REKEY, 1, 1, false, false },
246  { RADIOLIB_LORAWAN_MAC_ADR_PARAM_SETUP, 1, 0, false, false },
247  { RADIOLIB_LORAWAN_MAC_DEVICE_TIME, 5, 0, false, true },
248  { RADIOLIB_LORAWAN_MAC_FORCE_REJOIN, 2, 0, false, false },
249  { RADIOLIB_LORAWAN_MAC_REJOIN_PARAM_SETUP, 1, 1, false, false },
250  { RADIOLIB_LORAWAN_MAC_PROPRIETARY, 5, 0, false, true },
251 };
252 
253 #define RADIOLIB_LORAWAN_NONCES_VERSION_VAL (0x0001)
254 
255 enum LoRaWANSchemeBase_t {
256  RADIOLIB_LORAWAN_NONCES_START = 0x00,
257  RADIOLIB_LORAWAN_NONCES_VERSION = RADIOLIB_LORAWAN_NONCES_START, // 2 bytes
258  RADIOLIB_LORAWAN_NONCES_MODE = RADIOLIB_LORAWAN_NONCES_VERSION + sizeof(uint16_t), // 2 bytes
259  RADIOLIB_LORAWAN_NONCES_CLASS = RADIOLIB_LORAWAN_NONCES_MODE + sizeof(uint16_t), // 1 byte
260  RADIOLIB_LORAWAN_NONCES_PLAN = RADIOLIB_LORAWAN_NONCES_CLASS + sizeof(uint8_t), // 1 byte
261  RADIOLIB_LORAWAN_NONCES_CHECKSUM = RADIOLIB_LORAWAN_NONCES_PLAN + sizeof(uint8_t), // 2 bytes
262  RADIOLIB_LORAWAN_NONCES_DEV_NONCE = RADIOLIB_LORAWAN_NONCES_CHECKSUM + sizeof(uint16_t), // 2 bytes
263  RADIOLIB_LORAWAN_NONCES_JOIN_NONCE = RADIOLIB_LORAWAN_NONCES_DEV_NONCE + sizeof(uint16_t), // 3 bytes
264  RADIOLIB_LORAWAN_NONCES_ACTIVE = RADIOLIB_LORAWAN_NONCES_JOIN_NONCE + 3, // 1 byte
265  RADIOLIB_LORAWAN_NONCES_SIGNATURE = RADIOLIB_LORAWAN_NONCES_ACTIVE + sizeof(uint8_t), // 2 bytes
266  RADIOLIB_LORAWAN_NONCES_BUF_SIZE = RADIOLIB_LORAWAN_NONCES_SIGNATURE + sizeof(uint16_t) // Nonces buffer size
267 };
268 
269 enum LoRaWANSchemeSession_t {
270  RADIOLIB_LORAWAN_SESSION_START = 0x00,
271  RADIOLIB_LORAWAN_SESSION_NWK_SENC_KEY = RADIOLIB_LORAWAN_SESSION_START, // 16 bytes
272  RADIOLIB_LORAWAN_SESSION_APP_SKEY = RADIOLIB_LORAWAN_SESSION_NWK_SENC_KEY + RADIOLIB_AES128_KEY_SIZE, // 16 bytes
273  RADIOLIB_LORAWAN_SESSION_FNWK_SINT_KEY = RADIOLIB_LORAWAN_SESSION_APP_SKEY + RADIOLIB_AES128_KEY_SIZE, // 16 bytes
274  RADIOLIB_LORAWAN_SESSION_SNWK_SINT_KEY = RADIOLIB_LORAWAN_SESSION_FNWK_SINT_KEY + RADIOLIB_AES128_KEY_SIZE, // 16 bytes
275  RADIOLIB_LORAWAN_SESSION_DEV_ADDR = RADIOLIB_LORAWAN_SESSION_SNWK_SINT_KEY + RADIOLIB_AES128_KEY_SIZE, // 4 bytes
276  RADIOLIB_LORAWAN_SESSION_NONCES_SIGNATURE = RADIOLIB_LORAWAN_SESSION_DEV_ADDR + sizeof(uint32_t), // 2 bytes
277  RADIOLIB_LORAWAN_SESSION_FCNT_UP = RADIOLIB_LORAWAN_SESSION_NONCES_SIGNATURE + 2, // 4 bytes
278  RADIOLIB_LORAWAN_SESSION_N_FCNT_DOWN = RADIOLIB_LORAWAN_SESSION_FCNT_UP + sizeof(uint32_t), // 4 bytes
279  RADIOLIB_LORAWAN_SESSION_A_FCNT_DOWN = RADIOLIB_LORAWAN_SESSION_N_FCNT_DOWN + sizeof(uint32_t), // 4 bytes
280  RADIOLIB_LORAWAN_SESSION_ADR_FCNT = RADIOLIB_LORAWAN_SESSION_A_FCNT_DOWN + sizeof(uint32_t), // 4 bytes
281  RADIOLIB_LORAWAN_SESSION_CONF_FCNT_UP = RADIOLIB_LORAWAN_SESSION_ADR_FCNT + sizeof(uint32_t), // 4 bytes
282  RADIOLIB_LORAWAN_SESSION_CONF_FCNT_DOWN = RADIOLIB_LORAWAN_SESSION_CONF_FCNT_UP + sizeof(uint32_t), // 4 bytes
283  RADIOLIB_LORAWAN_SESSION_RJ_COUNT0 = RADIOLIB_LORAWAN_SESSION_CONF_FCNT_DOWN + sizeof(uint32_t), // 2 bytes
284  RADIOLIB_LORAWAN_SESSION_RJ_COUNT1 = RADIOLIB_LORAWAN_SESSION_RJ_COUNT0 + sizeof(uint16_t), // 2 bytes
285  RADIOLIB_LORAWAN_SESSION_HOMENET_ID = RADIOLIB_LORAWAN_SESSION_RJ_COUNT1 + sizeof(uint16_t), // 4 bytes
286  RADIOLIB_LORAWAN_SESSION_VERSION = RADIOLIB_LORAWAN_SESSION_HOMENET_ID + sizeof(uint32_t), // 1 byte
287  RADIOLIB_LORAWAN_SESSION_LINK_ADR = RADIOLIB_LORAWAN_SESSION_VERSION + sizeof(uint8_t), // 14 bytes
288  RADIOLIB_LORAWAN_SESSION_DUTY_CYCLE = RADIOLIB_LORAWAN_SESSION_LINK_ADR + 14, // 1 byte
289  RADIOLIB_LORAWAN_SESSION_RX_PARAM_SETUP = RADIOLIB_LORAWAN_SESSION_DUTY_CYCLE + 1, // 4 bytes
290  RADIOLIB_LORAWAN_SESSION_RX_TIMING_SETUP = RADIOLIB_LORAWAN_SESSION_RX_PARAM_SETUP + 4, // 1 byte
291  RADIOLIB_LORAWAN_SESSION_TX_PARAM_SETUP = RADIOLIB_LORAWAN_SESSION_RX_TIMING_SETUP + 1, // 1 byte
292  RADIOLIB_LORAWAN_SESSION_ADR_PARAM_SETUP = RADIOLIB_LORAWAN_SESSION_TX_PARAM_SETUP + 1, // 1 byte
293  RADIOLIB_LORAWAN_SESSION_REJOIN_PARAM_SETUP = RADIOLIB_LORAWAN_SESSION_ADR_PARAM_SETUP + 1, // 1 byte
294  RADIOLIB_LORAWAN_SESSION_BEACON_FREQ = RADIOLIB_LORAWAN_SESSION_REJOIN_PARAM_SETUP + 1, // 3 bytes
295  RADIOLIB_LORAWAN_SESSION_PING_SLOT_CHANNEL = RADIOLIB_LORAWAN_SESSION_BEACON_FREQ + 3, // 4 bytes
296  RADIOLIB_LORAWAN_SESSION_PERIODICITY = RADIOLIB_LORAWAN_SESSION_PING_SLOT_CHANNEL + 4, // 1 byte
297  RADIOLIB_LORAWAN_SESSION_LAST_TIME = RADIOLIB_LORAWAN_SESSION_PERIODICITY + 1, // 4 bytes
298  RADIOLIB_LORAWAN_SESSION_UL_CHANNELS = RADIOLIB_LORAWAN_SESSION_LAST_TIME + 4, // 16*5 bytes
299  RADIOLIB_LORAWAN_SESSION_DL_CHANNELS = RADIOLIB_LORAWAN_SESSION_UL_CHANNELS + RADIOLIB_LORAWAN_NUM_AVAILABLE_CHANNELS*5, // 16*4 bytes
300  RADIOLIB_LORAWAN_SESSION_AVAILABLE_CHANNELS = RADIOLIB_LORAWAN_SESSION_DL_CHANNELS + RADIOLIB_LORAWAN_NUM_AVAILABLE_CHANNELS*4, // 2 bytes
301  RADIOLIB_LORAWAN_SESSION_MAC_QUEUE = RADIOLIB_LORAWAN_SESSION_AVAILABLE_CHANNELS + sizeof(uint16_t), // 15 bytes
302  RADIOLIB_LORAWAN_SESSION_MAC_QUEUE_LEN = RADIOLIB_LORAWAN_SESSION_MAC_QUEUE + RADIOLIB_LORAWAN_FHDR_FOPTS_MAX_LEN, // 1 byte
303  RADIOLIB_LORAWAN_SESSION_SIGNATURE = RADIOLIB_LORAWAN_SESSION_MAC_QUEUE_LEN + sizeof(uint8_t), // 2 bytes
304  RADIOLIB_LORAWAN_SESSION_BUF_SIZE = RADIOLIB_LORAWAN_SESSION_SIGNATURE + sizeof(uint16_t) // Session buffer size
305 };
306 
314  bool enabled;
315 
317  uint8_t idx;
318 
320  uint32_t freq;
321 
323  uint8_t drMin;
324 
326  uint8_t drMax;
327 
329  uint8_t dr;
330 
332  bool available;
333 };
334 
335 // alias for unused channel
336 #define RADIOLIB_LORAWAN_CHANNEL_NONE { .enabled = false, .idx = RADIOLIB_LORAWAN_CHANNEL_INDEX_NONE, .freq = 0, \
337  .drMin = 0, .drMax = 0, .dr = RADIOLIB_LORAWAN_DATA_RATE_UNUSED, .available = false }
338 
346  uint8_t numChannels;
347 
349  uint32_t freqStart;
350 
352  uint32_t freqStep;
353 
355  uint8_t drMin;
356 
358  uint8_t drMax;
359 
361  uint8_t drJoinRequest;
362 };
363 
364 // alias for unused channel span
365 #define RADIOLIB_LORAWAN_CHANNEL_SPAN_NONE { .numChannels = 0, .freqStart = 0, .freqStep = 0, .drMin = 0, .drMax = 0, .drJoinRequest = RADIOLIB_LORAWAN_DATA_RATE_UNUSED }
366 
373  uint8_t bandNum;
374 
376  uint8_t bandType;
377 
379  uint32_t freqMin;
380 
382  uint32_t freqMax;
383 
385  uint8_t payloadLenMax[RADIOLIB_LORAWAN_CHANNEL_NUM_DATARATES];
386 
388  int8_t powerMax;
389 
392 
395 
398 
401 
404 
407 
410 
412  uint8_t numTxSpans;
413 
416 
419 
420  uint8_t rx1DrTable[RADIOLIB_LORAWAN_CHANNEL_NUM_DATARATES][8];
421 
424 
427 
430 
432  uint8_t dataRates[RADIOLIB_LORAWAN_CHANNEL_NUM_DATARATES];
433 };
434 
435 // supported bands
436 extern const LoRaWANBand_t EU868;
437 extern const LoRaWANBand_t US915;
438 extern const LoRaWANBand_t EU433;
439 extern const LoRaWANBand_t AU915;
440 extern const LoRaWANBand_t CN500;
441 extern const LoRaWANBand_t AS923;
442 extern const LoRaWANBand_t AS923_2;
443 extern const LoRaWANBand_t AS923_3;
444 extern const LoRaWANBand_t AS923_4;
445 extern const LoRaWANBand_t KR920;
446 extern const LoRaWANBand_t IN865;
447 
452 enum LoRaWANBandNum_t {
453  BandEU868,
454  BandUS915,
455  BandEU433,
456  BandAU915,
457  BandCN500,
458  BandAS923,
459  BandAS923_2,
460  BandAS923_3,
461  BandAS923_4,
462  BandKR920,
463  BandIN865,
464  BandLast
465 };
466 
467 // provide easy access to the number of currently supported bands
468 #define RADIOLIB_LORAWAN_NUM_SUPPORTED_BANDS (BandLast - BandEU868)
469 
470 // array of currently supported bands
471 extern const LoRaWANBand_t* LoRaWANBands[];
472 
479  bool newSession = false;
480 
482  uint16_t devNonce = 0;
483 
485  uint32_t joinNonce = 0;
486 };
487 
494  uint8_t dir;
495 
497  bool confirmed;
498 
502 
505 
507  uint8_t datarate;
508 
510  float freq;
511 
513  int16_t power;
514 
516  uint32_t fCnt;
517 
519  uint8_t fPort;
520 
522  uint8_t nbTrans;
523 };
524 
529 class LoRaWANNode {
530  public:
531 
538  LoRaWANNode(PhysicalLayer* phy, const LoRaWANBand_t* band, uint8_t subBand = 0);
539 
544  uint8_t* getBufferNonces();
545 
551  int16_t setBufferNonces(uint8_t* persistentBuffer);
552 
556  void clearSession();
557 
562  uint8_t* getBufferSession();
563 
569  int16_t setBufferSession(uint8_t* persistentBuffer);
570 
579  int16_t beginOTAA(uint64_t joinEUI, uint64_t devEUI, uint8_t* nwkKey, uint8_t* appKey);
580 
591  int16_t beginABP(uint32_t addr, uint8_t* fNwkSIntKey, uint8_t* sNwkSIntKey, uint8_t* nwkSEncKey, uint8_t* appSKey);
592 
599  virtual int16_t activateOTAA(uint8_t initialDr = RADIOLIB_LORAWAN_DATA_RATE_UNUSED, LoRaWANJoinEvent_t *joinEvent = NULL);
600 
607  virtual int16_t activateABP(uint8_t initialDr = RADIOLIB_LORAWAN_DATA_RATE_UNUSED);
608 
610  bool isActivated();
611 
612  #if defined(RADIOLIB_BUILD_ARDUINO)
625  virtual int16_t sendReceive(String& strUp, uint8_t fPort, String& strDown, bool isConfirmed = false, LoRaWANEvent_t* eventUp = NULL, LoRaWANEvent_t* eventDown = NULL);
626  #endif
627 
639  virtual int16_t sendReceive(const char* strUp, uint8_t fPort, bool isConfirmed = false, LoRaWANEvent_t* eventUp = NULL, LoRaWANEvent_t* eventDown = NULL);
640 
654  virtual int16_t sendReceive(const char* strUp, uint8_t fPort, uint8_t* dataDown, size_t* lenDown, bool isConfirmed = false, LoRaWANEvent_t* eventUp = NULL, LoRaWANEvent_t* eventDown = NULL);
655 
668  virtual int16_t sendReceive(uint8_t* dataUp, size_t lenUp, uint8_t fPort = 1, bool isConfirmed = false, LoRaWANEvent_t* eventUp = NULL, LoRaWANEvent_t* eventDown = NULL);
669 
684  virtual int16_t sendReceive(uint8_t* dataUp, size_t lenUp, uint8_t fPort, uint8_t* dataDown, size_t* lenDown, bool isConfirmed = false, LoRaWANEvent_t* eventUp = NULL, LoRaWANEvent_t* eventDown = NULL);
685 
693  int16_t sendMacCommandReq(uint8_t cid);
694 
703  int16_t getMacLinkCheckAns(uint8_t* margin, uint8_t* gwCnt);
704 
714  int16_t getMacDeviceTimeAns(uint32_t* gpsEpoch, uint8_t* fraction, bool returnUnix = true);
715 
721  int16_t setDatarate(uint8_t drUp);
722 
728  int16_t setTxPower(int8_t txPower);
729 
736  int16_t setRx2Dr(uint8_t dr);
737 
742  void setADR(bool enable = true);
743 
750  void setDutyCycle(bool enable = true, RadioLibTime_t msPerHour = 0);
751 
758  void setDwellTime(bool enable, RadioLibTime_t msPerUplink = 0);
759 
767  void setCSMA(bool csmaEnabled, uint8_t maxChanges = 4, uint8_t backoffMax = 0, uint8_t difsSlots = 2);
768 
774  void setDeviceStatus(uint8_t battLevel);
775 
783  void scheduleTransmission(RadioLibTime_t tUplink);
784 
789  uint32_t getFCntUp();
790 
795  uint32_t getNFCntDown();
796 
801  uint32_t getAFCntDown();
802 
808  void resetFCntDown();
809 
814  uint32_t getDevAddr();
815 
821 
830 
833 
838  uint8_t getMaxPayloadLen();
839 
844  bool TS009 = false;
845 
859 
860 #if !RADIOLIB_GODMODE
861  protected:
862 #endif
863  PhysicalLayer* phyLayer = NULL;
864  const LoRaWANBand_t* band = NULL;
865 
866  // a buffer that holds all LW base parameters that should persist at all times!
867  uint8_t bufferNonces[RADIOLIB_LORAWAN_NONCES_BUF_SIZE] = { 0 };
868 
869  // a buffer that holds all LW session parameters that preferably persist, but can be afforded to get lost
870  uint8_t bufferSession[RADIOLIB_LORAWAN_SESSION_BUF_SIZE] = { 0 };
871 
872  uint8_t fOptsUp[RADIOLIB_LORAWAN_FHDR_FOPTS_MAX_LEN] = { 0 };
873  uint8_t fOptsDown[RADIOLIB_LORAWAN_FHDR_FOPTS_MAX_LEN] = { 0 };
874  uint8_t fOptsUpLen = 0;
875  uint8_t fOptsDownLen = 0;
876 
877  uint16_t lwMode = RADIOLIB_LORAWAN_MODE_NONE;
878  uint8_t lwClass = RADIOLIB_LORAWAN_CLASS_A;
879  bool isActive = false;
880 
881  uint64_t joinEUI = 0;
882  uint64_t devEUI = 0;
883  uint8_t nwkKey[RADIOLIB_AES128_KEY_SIZE] = { 0 };
884  uint8_t appKey[RADIOLIB_AES128_KEY_SIZE] = { 0 };
885 
886  // the following is either provided by the network server (OTAA)
887  // or directly entered by the user (ABP)
888  uint32_t devAddr = 0;
889  uint8_t appSKey[RADIOLIB_AES128_KEY_SIZE] = { 0 };
890  uint8_t fNwkSIntKey[RADIOLIB_AES128_KEY_SIZE] = { 0 };
891  uint8_t sNwkSIntKey[RADIOLIB_AES128_KEY_SIZE] = { 0 };
892  uint8_t nwkSEncKey[RADIOLIB_AES128_KEY_SIZE] = { 0 };
893  uint8_t jSIntKey[RADIOLIB_AES128_KEY_SIZE] = { 0 };
894 
895  uint16_t keyCheckSum = 0;
896 
897  // device-specific parameters, persistent through sessions
898  uint16_t devNonce = 0;
899  uint32_t joinNonce = 0;
900 
901  // session-specific parameters
902  uint32_t homeNetId = 0;
903  uint8_t adrLimitExp = RADIOLIB_LORAWAN_ADR_ACK_LIMIT_EXP;
904  uint8_t adrDelayExp = RADIOLIB_LORAWAN_ADR_ACK_DELAY_EXP;
905  uint8_t nbTrans = 1; // Number of allowed frame retransmissions
906  uint8_t txPowerSteps = 0;
907  uint8_t txPowerMax = 0;
908  uint32_t fCntUp = 0;
909  uint32_t aFCntDown = 0;
910  uint32_t nFCntDown = 0;
911  uint32_t confFCntUp = RADIOLIB_LORAWAN_FCNT_NONE;
912  uint32_t confFCntDown = RADIOLIB_LORAWAN_FCNT_NONE;
913  uint32_t adrFCnt = 0;
914 
915  // ADR is enabled by default
916  bool adrEnabled = true;
917 
918  // duty cycle is set upon initialization and activated in regions that impose this
919  bool dutyCycleEnabled = false;
920  uint32_t dutyCycle = 0;
921 
922  // dwell time is set upon initialization and activated in regions that impose this
923  bool dwellTimeEnabledUp = false;
924  uint16_t dwellTimeUp = 0;
925  bool dwellTimeEnabledDn = false;
926  uint16_t dwellTimeDn = 0;
927 
928  RadioLibTime_t tUplink = 0; // scheduled uplink transmission time (internal clock)
929  RadioLibTime_t tDownlink = 0; // time at end of downlink reception
930 
931  // enable/disable CSMA for LoRaWAN
932  bool csmaEnabled = false;
933 
934  // maximum number of channel hops during CSMA
935  uint8_t maxChanges = RADIOLIB_LORAWAN_MAX_CHANGES_DEFAULT;
936 
937  // number of backoff slots to be checked after DIFS phase.
938  // A random BO avoids collisions in the case where two or more nodes start the CSMA
939  // process at the same time.
940  uint8_t backoffMax = RADIOLIB_LORAWAN_BACKOFF_MAX_DEFAULT;
941 
942  // number of CADs to estimate a clear CH
943  uint8_t difsSlots = RADIOLIB_LORAWAN_DIFS_DEFAULT;
944 
945  // available channel frequencies from list passed during OTA activation
946  LoRaWANChannel_t channelPlan[2][RADIOLIB_LORAWAN_NUM_AVAILABLE_CHANNELS];
947 
948  // currently configured channels for TX, RX1, RX2
949  LoRaWANChannel_t channels[3] = { RADIOLIB_LORAWAN_CHANNEL_NONE, RADIOLIB_LORAWAN_CHANNEL_NONE,
950  RADIOLIB_LORAWAN_CHANNEL_NONE };
951 
952  // delays between the uplink and RX1/2 windows
953  // the first field is meaningless, but is used for offsetting for Rx windows 1 and 2
954  RadioLibTime_t rxDelays[3] = { 0, RADIOLIB_LORAWAN_RECEIVE_DELAY_1_MS, RADIOLIB_LORAWAN_RECEIVE_DELAY_2_MS };
955 
956  // offset between TX and RX1 (such that RX1 has equal or lower DR)
957  uint8_t rx1DrOffset = 0;
958 
959  // LoRaWAN revision (1.0 vs 1.1)
960  uint8_t rev = 0;
961 
962  // Time on Air of last uplink
963  RadioLibTime_t lastToA = 0;
964 
965  // timestamp to measure the RX1/2 delay (from uplink end)
966  RadioLibTime_t rxDelayStart = 0;
967 
968  // timestamp when the Rx1/2 windows were closed (timeout or uplink received)
969  RadioLibTime_t rxDelayEnd = 0;
970 
971  // device status - battery level
972  uint8_t battLevel = 0xFF;
973 
974  // indicates whether an uplink has MAC commands as payload
975  bool isMACPayload = false;
976 
977  // save the selected sub-band in case this must be restored in ADR control
978  uint8_t subBand = 0;
979 
980  // allow port 226 for devices implementing TS011
981  bool TS011 = false;
982 
983  // this will reset the device credentials, so the device starts completely new
984  void clearNonces();
985 
986  // start a fresh session using default parameters
987  void createSession(uint16_t lwMode, uint8_t initialDr);
988 
989  // setup Join-Request payload
990  void composeJoinRequest(uint8_t* joinRequestMsg);
991 
992  // extract Join-Accept payload and start a new session
993  int16_t processJoinAccept(LoRaWANJoinEvent_t *joinEvent);
994 
995  // a join-accept can piggy-back a set of channels or channel masks
996  void processCFList(uint8_t* cfList);
997 
998  // check whether payload length and fport are allowed
999  int16_t isValidUplink(uint8_t* len, uint8_t fPort);
1000 
1001  // perform ADR backoff
1002  void adrBackoff();
1003 
1004  // create an encrypted uplink buffer, composing metadata, user data and MAC data
1005  void composeUplink(uint8_t* in, uint8_t lenIn, uint8_t* out, uint8_t fPort, bool isConfirmed);
1006 
1007  // generate and set the MIC of an uplink buffer (depends on selected channels)
1008  void micUplink(uint8_t* inOut, uint8_t lenInOut);
1009 
1010  // transmit uplink buffer on a specified channel
1011  int16_t transmitUplink(LoRaWANChannel_t* chnl, uint8_t* in, uint8_t len, bool retrans);
1012 
1013  // wait for, open and listen during receive windows; only performs listening
1014  int16_t receiveCommon(uint8_t dir, const LoRaWANChannel_t* dlChannels, const RadioLibTime_t* dlDelays, uint8_t numWindows, RadioLibTime_t tReference);
1015 
1016  // extract downlink payload and process MAC commands
1017  int16_t parseDownlink(uint8_t* data, size_t* len, LoRaWANEvent_t* event = NULL);
1018 
1019  // execute mac command, return the number of processed bytes for sequential processing
1020  bool execMacCommand(uint8_t cid, uint8_t* optIn, uint8_t lenIn);
1021  bool execMacCommand(uint8_t cid, uint8_t* optIn, uint8_t lenIn, uint8_t* optOut);
1022 
1023  // possible override for additional MAC commands that are not in the base specification
1024  virtual bool derivedMacHandler(uint8_t cid, uint8_t* optIn, uint8_t lenIn, uint8_t* optOut);
1025 
1026  // pre-process a (set of) LinkAdrReq commands into one super-channel-mask + Tx/Dr/NbTrans fields
1027  void preprocessMacLinkAdr(uint8_t* mPtr, uint8_t cLen, uint8_t* mAdrOpt);
1028 
1029  // post-process a (set of) LinkAdrAns commands depending on LoRaWAN version
1030  void postprocessMacLinkAdr(uint8_t* ack, uint8_t cLen);
1031 
1032  // get the properties of a MAC command given a certain command ID
1033  int16_t getMacCommand(uint8_t cid, LoRaWANMacCommand_t* cmd);
1034 
1035  // possible override for additional MAC commands that are not in the base specification
1036  virtual int16_t derivedMacFinder(uint8_t cid, LoRaWANMacCommand_t* cmd);
1037 
1038  // get the length of a certain MAC command in a specific direction (up/down)
1039  // if inclusive is true, add one for the CID byte
1040  int16_t getMacLen(uint8_t cid, uint8_t* len, uint8_t dir, bool inclusive = false);
1041 
1042  // find out of a MAC command should persist destruction
1043  // in uplink direction, some commands must persist if no downlink is received
1044  // in downlink direction, the user-accessible MAC commands remain available for retrieval
1045  bool isPersistentMacCommand(uint8_t cid, uint8_t dir);
1046 
1047  // push MAC command to queue, done by copy
1048  int16_t pushMacCommand(uint8_t cid, uint8_t* cOcts, uint8_t* out, uint8_t* lenOut, uint8_t dir);
1049 
1050  // retrieve the payload of a certain MAC command, if present in the buffer
1051  int16_t getMacPayload(uint8_t cid, uint8_t* in, uint8_t lenIn, uint8_t* out, uint8_t dir);
1052 
1053  // delete a specific MAC command from queue, indicated by the command ID
1054  int16_t deleteMacCommand(uint8_t cid, uint8_t* inOut, uint8_t* lenInOut, uint8_t dir);
1055 
1056  // clear a MAC buffer, possible retaining persistent MAC commands
1057  void clearMacCommands(uint8_t* inOut, uint8_t* lenInOut, uint8_t dir);
1058 
1059  // configure the common physical layer properties (frequency, sync word etc.)
1060  int16_t setPhyProperties(const LoRaWANChannel_t* chnl, uint8_t dir, int8_t pwr, size_t pre = 0);
1061 
1062  // Performs CSMA as per LoRa Alliance Technical Recommendation 13 (TR-013).
1063  bool csmaChannelClear(uint8_t difs, uint8_t numBackoff);
1064 
1065  // perform a single CAD operation for the under SF/CH combination. Returns either busy or otherwise.
1066  bool cadChannelClear();
1067 
1068  // (dynamic bands:) get or (fixed bands:) create a complete 80-bit channel mask for current configuration
1069  void getChannelPlanMask(uint64_t* chMaskGrp0123, uint32_t* chMaskGrp45);
1070 
1071  // setup uplink/downlink channel data rates and frequencies
1072  // for dynamic channels, there is a small set of predefined channels
1073  // in case of JoinRequest, add some optional extra frequencies
1074  void selectChannelPlanDyn(bool joinRequest = false);
1075 
1076  // setup uplink/downlink channel data rates and frequencies
1077  // for fixed bands, we only allow one sub-band at a time to be selected
1078  void selectChannelPlanFix();
1079 
1080  // get the number of available channels,
1081  // along with a 16-bit mask indicating which channels can be used next for uplink/downlink
1082  uint8_t getAvailableChannels(uint16_t* mask);
1083 
1084  // (re)set/restore which channels can be used next for uplink/downlink
1085  void setAvailableChannels(uint16_t mask);
1086 
1087  // select a set of random TX/RX channels for up- and downlink
1088  int16_t selectChannels();
1089 
1090  // apply a 96-bit channel mask
1091  bool applyChannelMask(uint64_t chMaskGrp0123, uint32_t chMaskGrp45);
1092 
1093 #if RADIOLIB_DEBUG_PROTOCOL
1094  // print the available channels through debug
1095  void printChannels();
1096 #endif
1097 
1098  // method to generate message integrity code
1099  uint32_t generateMIC(uint8_t* msg, size_t len, uint8_t* key);
1100 
1101  // method to verify message integrity code
1102  // it assumes that the MIC is the last 4 bytes of the message
1103  bool verifyMIC(uint8_t* msg, size_t len, uint8_t* key);
1104 
1105  // find the first usable data rate for the given band
1106  int16_t findDataRate(uint8_t dr, DataRate_t* dataRate);
1107 
1108  // function to encrypt and decrypt payloads (regular uplink/downlink)
1109  void processAES(const uint8_t* in, size_t len, uint8_t* key, uint8_t* out, uint32_t fCnt, uint8_t dir, uint8_t ctrId, bool counter);
1110 
1111  // 16-bit checksum method that takes a uint8_t array of even length and calculates the checksum
1112  static uint16_t checkSum16(const uint8_t *key, uint16_t keyLen);
1113 
1114  // check the integrity of a buffer using a 16-bit checksum located in the last two bytes of the buffer
1115  static int16_t checkBufferCommon(uint8_t *buffer, uint16_t size);
1116 
1117  // network-to-host conversion method - takes data from network packet and converts it to the host endians
1118  template<typename T>
1119  static T ntoh(uint8_t* buff, size_t size = 0);
1120 
1121  // host-to-network conversion method - takes data from host variable and and converts it to network packet endians
1122  template<typename T>
1123  static void hton(uint8_t* buff, T val, size_t size = 0);
1124 };
1125 
1126 template<typename T>
1127 T LoRaWANNode::ntoh(uint8_t* buff, size_t size) {
1128  uint8_t* buffPtr = buff;
1129  size_t targetSize = sizeof(T);
1130  if(size != 0) {
1131  targetSize = size;
1132  }
1133  T res = 0;
1134  for(size_t i = 0; i < targetSize; i++) {
1135  res |= (uint32_t)(*(buffPtr++)) << 8*i;
1136  }
1137  return(res);
1138 }
1139 
1140 template<typename T>
1141 void LoRaWANNode::hton(uint8_t* buff, T val, size_t size) {
1142  uint8_t* buffPtr = buff;
1143  size_t targetSize = sizeof(T);
1144  if(size != 0) {
1145  targetSize = size;
1146  }
1147  for(size_t i = 0; i < targetSize; i++) {
1148  *(buffPtr++) = val >> 8*i;
1149  }
1150 }
1151 
1152 #endif
LoRaWAN-compatible node (class A device).
Definition: LoRaWAN.h:529
void clearSession()
Clear an active session, so that the device will have to rejoin the network.
Definition: LoRaWAN.cpp:280
int16_t setBufferNonces(uint8_t *persistentBuffer)
Fill the internal buffer that holds the LW base parameters with a supplied buffer.
Definition: LoRaWAN.cpp:244
virtual int16_t sendReceive(const char *strUp, uint8_t fPort, bool isConfirmed=false, LoRaWANEvent_t *eventUp=NULL, LoRaWANEvent_t *eventDown=NULL)
Send a message to the server and wait for a downlink during Rx1 and/or Rx2 window.
Definition: LoRaWAN.cpp:45
int16_t setDatarate(uint8_t drUp)
Set uplink datarate. This should not be used when ADR is enabled.
Definition: LoRaWAN.cpp:2599
void scheduleTransmission(RadioLibTime_t tUplink)
Set the exact time a transmission should occur. Note: this is the internal clock time....
Definition: LoRaWAN.cpp:2730
RadioLibTime_t scanGuard
Rx window padding in milliseconds according to the spec, the Rx window must be at least enough time t...
Definition: LoRaWAN.h:858
void setCSMA(bool csmaEnabled, uint8_t maxChanges=4, uint8_t backoffMax=0, uint8_t difsSlots=2)
Configures CSMA for LoRaWAN as per TR013, LoRa Alliance.
Definition: LoRaWAN.cpp:2712
void setDutyCycle(bool enable=true, RadioLibTime_t msPerHour=0)
Toggle adherence to dutyCycle limits to on or off.
Definition: LoRaWAN.cpp:2689
int16_t beginABP(uint32_t addr, uint8_t *fNwkSIntKey, uint8_t *sNwkSIntKey, uint8_t *nwkSEncKey, uint8_t *appSKey)
Set the device credentials and activation configuration.
Definition: LoRaWAN.cpp:620
RadioLibTime_t timeUntilUplink()
Returns time in milliseconds until next uplink is available under dutyCycle limits.
Definition: LoRaWAN.cpp:3247
void setDeviceStatus(uint8_t battLevel)
Set device status.
Definition: LoRaWAN.cpp:2726
RadioLibTime_t dutyCycleInterval(RadioLibTime_t msPerHour, RadioLibTime_t airtime)
Calculate the minimum interval to adhere to a certain dutyCycle. This interval is based on the ToA of...
Definition: LoRaWAN.cpp:3237
void setDwellTime(bool enable, RadioLibTime_t msPerUplink=0)
Toggle adherence to dwellTime limits to on or off.
Definition: LoRaWAN.cpp:2701
uint32_t getAFCntDown()
Returns the last application downlink's frame counter; also 0 if no application downlink occured yet.
Definition: LoRaWAN.cpp:2746
RadioLibTime_t getLastToA()
Get the Time-on-air of the last uplink message (in milliseconds).
Definition: LoRaWAN.cpp:2759
virtual int16_t activateABP(uint8_t initialDr=RADIOLIB_LORAWAN_DATA_RATE_UNUSED)
Join network by restoring ABP session or performing over-the-air activation. In this procedure,...
Definition: LoRaWAN.cpp:966
bool TS009
TS009 Protocol Specification Verification switch (allows FPort 224 and cuts off uplink payload instea...
Definition: LoRaWAN.h:844
uint8_t * getBufferNonces()
Returns the pointer to the internal buffer that holds the LW base parameters.
Definition: LoRaWAN.cpp:229
uint8_t * getBufferSession()
Returns the pointer to the internal buffer that holds the LW session parameters.
Definition: LoRaWAN.cpp:435
bool isActivated()
Whether there is an ongoing session active.
Definition: LoRaWAN.cpp:1057
int16_t setTxPower(int8_t txPower)
Configure TX power of the radio module.
Definition: LoRaWAN.cpp:2632
int16_t getMacDeviceTimeAns(uint32_t *gpsEpoch, uint8_t *fraction, bool returnUnix=true)
Returns the network time after requesting a DeviceTime MAC command. Returns 'true' if a network respo...
Definition: LoRaWAN.cpp:2450
uint32_t getNFCntDown()
Returns the last network downlink's frame counter; also 0 if no network downlink occured yet.
Definition: LoRaWAN.cpp:2742
int16_t setBufferSession(uint8_t *persistentBuffer)
Fill the internal buffer that holds the LW session parameters with a supplied buffer.
Definition: LoRaWAN.cpp:467
LoRaWANNode(PhysicalLayer *phy, const LoRaWANBand_t *band, uint8_t subBand=0)
Default constructor.
Definition: LoRaWAN.cpp:9
uint8_t getMaxPayloadLen()
Returns the maximum allowed uplink payload size given the current MAC state. Most importantly,...
Definition: LoRaWAN.cpp:3256
virtual int16_t activateOTAA(uint8_t initialDr=RADIOLIB_LORAWAN_DATA_RATE_UNUSED, LoRaWANJoinEvent_t *joinEvent=NULL)
Join network by restoring OTAA session or performing over-the-air activation. By this procedure,...
Definition: LoRaWAN.cpp:876
int16_t beginOTAA(uint64_t joinEUI, uint64_t devEUI, uint8_t *nwkKey, uint8_t *appKey)
Set the device credentials and activation configuration.
Definition: LoRaWAN.cpp:591
uint32_t getFCntUp()
Returns the last uplink's frame counter; also 0 if no uplink occured yet.
Definition: LoRaWAN.cpp:2735
int16_t setRx2Dr(uint8_t dr)
Configure the Rx2 datarate for ABP mode. This should not be needed for LoRaWAN 1.1 as it is configure...
Definition: LoRaWAN.cpp:2658
int16_t sendMacCommandReq(uint8_t cid)
Add a MAC command to the uplink queue. Only LinkCheck and DeviceTime are available to the user....
Definition: LoRaWAN.cpp:2415
int16_t getMacLinkCheckAns(uint8_t *margin, uint8_t *gwCnt)
Returns the quality of connectivity after requesting a LinkCheck MAC command. Returns 'true' if a net...
Definition: LoRaWAN.cpp:2439
void setADR(bool enable=true)
Toggle ADR to on or off.
Definition: LoRaWAN.cpp:2685
uint32_t getDevAddr()
Returns the DevAddr of the device, regardless of OTAA or ABP mode.
Definition: LoRaWAN.cpp:2755
void resetFCntDown()
Reset the downlink frame counters (application and network) This is unsafe and can possibly allow rep...
Definition: LoRaWAN.cpp:2750
Provides common interface for protocols that run on LoRa/FSK modules, such as RTTY or LoRaWAN....
Definition: PhysicalLayer.h:151
unsigned long RadioLibTime_t
Type used for durations in RadioLib.
Definition: TypeDef.h:642
Structure to save information about LoRaWAN band.
Definition: LoRaWAN.h:371
int8_t powerMax
Maximum allowed output power in this band in dBm.
Definition: LoRaWAN.h:388
bool txParamSupported
Whether this band implements the MAC command TxParamSetupReq.
Definition: LoRaWAN.h:403
LoRaWANChannel_t txAck[2]
Relay channels for ACK downlink.
Definition: LoRaWAN.h:429
RadioLibTime_t dutyCycle
Number of milliseconds per hour of allowed Time-on-Air.
Definition: LoRaWAN.h:394
uint8_t dataRates[RADIOLIB_LORAWAN_CHANNEL_NUM_DATARATES]
The corresponding datarates, bandwidths and coding rates for DR index.
Definition: LoRaWAN.h:432
RadioLibTime_t dwellTimeUp
Maximum dwell time per uplink message in milliseconds.
Definition: LoRaWAN.h:397
LoRaWANChannel_t txWoR[2]
Relay channels for WoR uplink.
Definition: LoRaWAN.h:426
uint32_t freqMin
Minimum allowed frequency (coded in 100 Hz steps)
Definition: LoRaWAN.h:379
uint8_t payloadLenMax[RADIOLIB_LORAWAN_CHANNEL_NUM_DATARATES]
Array of allowed maximum application payload lengths for each data rate (N-value)
Definition: LoRaWAN.h:385
LoRaWANChannel_t txFreqs[3]
A set of default uplink (TX) channels for dynamic bands.
Definition: LoRaWAN.h:406
LoRaWANChannel_t txJoinReq[3]
A set of possible extra channels for the Join-Request message for dynamic bands.
Definition: LoRaWAN.h:409
int8_t powerNumSteps
Number of power steps in this band.
Definition: LoRaWAN.h:391
LoRaWANChannelSpan_t txSpans[2]
Default uplink (TX) channel spans for fixed bands, including Join-Request parameters.
Definition: LoRaWAN.h:415
uint8_t bandNum
Identier for this band.
Definition: LoRaWAN.h:373
uint32_t freqMax
Maximum allowed frequency (coded in 100 Hz steps)
Definition: LoRaWAN.h:382
uint8_t bandType
Whether the channels are fixed per specification, or dynamically allocated through the network (plus ...
Definition: LoRaWAN.h:376
LoRaWANChannel_t rx2
Backup channel for downlink (RX2) window.
Definition: LoRaWAN.h:423
uint8_t numTxSpans
The number of TX channel spans for fixed bands.
Definition: LoRaWAN.h:412
RadioLibTime_t dwellTimeDn
Maximum dwell time per downlink message in milliseconds.
Definition: LoRaWAN.h:400
LoRaWANChannelSpan_t rx1Span
Default downlink (RX1) channel span for fixed bands.
Definition: LoRaWAN.h:418
IDs of all currently supported bands.
Structure to save information about LoRaWAN channels. To save space, adjacent channels are saved in "...
Definition: LoRaWAN.h:312
bool available
Whether this channel is available for channel selection.
Definition: LoRaWAN.h:332
uint8_t dr
Datarate currently in use on this channel.
Definition: LoRaWAN.h:329
uint32_t freq
The channel frequency (coded in 100 Hz steps)
Definition: LoRaWAN.h:320
uint8_t idx
The channel number, as specified by defaults or the network.
Definition: LoRaWAN.h:317
uint8_t drMin
Minimum allowed datarate for this channel.
Definition: LoRaWAN.h:323
bool enabled
Whether this channel is enabled (can be used) or is disabled.
Definition: LoRaWAN.h:314
uint8_t drMax
Maximum allowed datarate for this channel (inclusive)
Definition: LoRaWAN.h:326
Structure to save information about LoRaWAN channels. To save space, adjacent channels are saved in "...
Definition: LoRaWAN.h:344
uint8_t drJoinRequest
Allowed data rates for a join request message.
Definition: LoRaWAN.h:361
uint32_t freqStart
Center frequency of the first channel in span (coded in 100 Hz steps)
Definition: LoRaWAN.h:349
uint8_t numChannels
Total number of channels in the span.
Definition: LoRaWAN.h:346
uint8_t drMax
Maximum allowed datarate for all channels in this span (inclusive)
Definition: LoRaWAN.h:358
uint32_t freqStep
Frequency step between adjacent channels (coded in 100 Hz steps)
Definition: LoRaWAN.h:352
uint8_t drMin
Minimum allowed datarate for all channels in this span.
Definition: LoRaWAN.h:355
Structure to save extra information about uplink/downlink event.
Definition: LoRaWAN.h:492
float freq
Frequency in MHz.
Definition: LoRaWAN.h:510
bool confirmed
Whether the event is confirmed or not (e.g., confirmed uplink sent by user application)
Definition: LoRaWAN.h:497
uint8_t fPort
Port number.
Definition: LoRaWAN.h:519
int16_t power
Transmit power in dBm for uplink, or RSSI for downlink.
Definition: LoRaWAN.h:513
bool confirming
Whether the event is confirming a previous request (e.g., server downlink reply to confirmed uplink s...
Definition: LoRaWAN.h:501
uint8_t datarate
Datarate.
Definition: LoRaWAN.h:507
uint8_t dir
Event direction, one of RADIOLIB_LORAWAN_CHANNEL_DIR_*.
Definition: LoRaWAN.h:494
uint8_t nbTrans
Number of times this uplink was transmitted (ADR)
Definition: LoRaWAN.h:522
uint32_t fCnt
The appropriate frame counter - for different events, different frame counters will be reported!
Definition: LoRaWAN.h:516
bool frmPending
Whether further downlink messages are pending on the server side.
Definition: LoRaWAN.h:504
Structure to save extra information about activation event.
Definition: LoRaWAN.h:477
bool newSession
Whether a new session was started.
Definition: LoRaWAN.h:479
uint32_t joinNonce
The received Join-Request JoinNonce value.
Definition: LoRaWAN.h:485
uint16_t devNonce
The transmitted Join-Request DevNonce value.
Definition: LoRaWAN.h:482
MAC command specification structure.
Definition: LoRaWAN.h:215
const uint8_t lenDn
Uplink message length.
Definition: LoRaWAN.h:220
const bool user
Whether this MAC command can be issued by the user or not.
Definition: LoRaWAN.h:229
const uint8_t cid
Command ID.
Definition: LoRaWAN.h:217
const uint8_t lenUp
Downlink message length.
Definition: LoRaWAN.h:223
const bool persist
Some commands must be resent until Class A downlink received.
Definition: LoRaWAN.h:226
Common data rate structure.
Definition: PhysicalLayer.h:74