mirror of https://github.com/ARMmbed/mbed-os.git
				
				
				
			
		
			
				
	
	
		
			506 lines
		
	
	
		
			15 KiB
		
	
	
	
		
			C++
		
	
	
			
		
		
	
	
			506 lines
		
	
	
		
			15 KiB
		
	
	
	
		
			C++
		
	
	
/**
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 *  @file LoRaPHYKR920.cpp
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 *
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 *  @brief Implements LoRaPHY for Korean 920 MHz band
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 *
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 *  \code
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 *   ______                              _
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 *  / _____)             _              | |
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 * ( (____  _____ ____ _| |_ _____  ____| |__
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 *  \____ \| ___ |    (_   _) ___ |/ ___)  _ \
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 *  _____) ) ____| | | || |_| ____( (___| | | |
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 * (______/|_____)_|_|_| \__)_____)\____)_| |_|
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 *   (C)2013 Semtech
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 *  ___ _____ _   ___ _  _____ ___  ___  ___ ___
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 * / __|_   _/_\ / __| |/ / __/ _ \| _ \/ __| __|
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 * \__ \ | |/ _ \ (__| ' <| _| (_) |   / (__| _|
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 * |___/ |_/_/ \_\___|_|\_\_| \___/|_|_\\___|___|
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 * embedded.connectivity.solutions===============
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 *
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 * \endcode
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 *
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 *
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 * License: Revised BSD License, see LICENSE.TXT file include in the project
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 *
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 * Maintainer: Miguel Luis ( Semtech ), Gregory Cristian ( Semtech ) and Daniel Jaeckle ( STACKFORCE )
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 *
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 * Copyright (c) 2017, Arm Limited and affiliates.
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 * SPDX-License-Identifier: BSD-3-Clause
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 *
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 */
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#include "LoRaPHYKR920.h"
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#include "lora_phy_ds.h"
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/*!
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 * Number of default channels
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 */
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#define KR920_NUMB_DEFAULT_CHANNELS                 3
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/*!
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 * Number of channels to apply for the CF list
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 */
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#define KR920_NUMB_CHANNELS_CF_LIST                 5
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/*!
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 * Minimal datarate that can be used by the node
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 */
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#define KR920_TX_MIN_DATARATE                       DR_0
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/*!
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 * Maximal datarate that can be used by the node
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 */
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#define KR920_TX_MAX_DATARATE                       DR_5
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/*!
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 * Minimal datarate that can be used by the node
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 */
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#define KR920_RX_MIN_DATARATE                       DR_0
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/*!
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 * Maximal datarate that can be used by the node
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 */
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#define KR920_RX_MAX_DATARATE                       DR_5
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/*!
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 * Default datarate used by the node
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 */
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#define KR920_DEFAULT_DATARATE                      DR_0
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/*!
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 * Minimal Rx1 receive datarate offset
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 */
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#define KR920_MIN_RX1_DR_OFFSET                     0
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/*!
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 * Maximal Rx1 receive datarate offset
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 */
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#define KR920_MAX_RX1_DR_OFFSET                     5
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/*!
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 * Default Rx1 receive datarate offset
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 */
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#define KR920_DEFAULT_RX1_DR_OFFSET                 0
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/*!
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 * Minimal Tx output power that can be used by the node
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 */
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#define KR920_MIN_TX_POWER                          TX_POWER_7
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/*!
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 * Maximal Tx output power that can be used by the node
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 */
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#define KR920_MAX_TX_POWER                          TX_POWER_0
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/*!
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 * Default Tx output power used by the node
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 */
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#define KR920_DEFAULT_TX_POWER                      TX_POWER_0
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/*!
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 * Default Max EIRP for frequency 920.9 MHz - 921.9 MHz
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 */
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#define KR920_DEFAULT_MAX_EIRP_LOW                  10.0f
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/*!
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 * Default Max EIRP for frequency 922.1 MHz - 923.3 MHz
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 */
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#define KR920_DEFAULT_MAX_EIRP_HIGH                 14.0f
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/*!
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 * Default antenna gain
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 */
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#define KR920_DEFAULT_ANTENNA_GAIN                  2.15f
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/*!
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 * ADR Ack limit
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 */
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#define KR920_ADR_ACK_LIMIT                         64
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/*!
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 * ADR Ack delay
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 */
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#define KR920_ADR_ACK_DELAY                         32
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/*!
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 * Enabled or disabled the duty cycle
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 */
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#define KR920_DUTY_CYCLE_ENABLED                    0
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/*!
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 * Maximum RX window duration
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 */
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#define KR920_MAX_RX_WINDOW                         4000
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/*!
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 * Receive delay 1
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 */
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#define KR920_RECEIVE_DELAY1                        1000
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/*!
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 * Receive delay 2
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 */
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#define KR920_RECEIVE_DELAY2                        2000
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/*!
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 * Join accept delay 1
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 */
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#define KR920_JOIN_ACCEPT_DELAY1                    5000
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/*!
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 * Join accept delay 2
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 */
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#define KR920_JOIN_ACCEPT_DELAY2                    6000
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/*!
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 * Maximum frame counter gap
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 */
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#define KR920_MAX_FCNT_GAP                          16384
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/*!
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 * Ack timeout
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 */
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#define KR920_ACKTIMEOUT                            2000
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/*!
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 * Random ack timeout limits
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 */
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#define KR920_ACK_TIMEOUT_RND                       1000
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#if ( KR920_DEFAULT_DATARATE > DR_5 )
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#error "A default DR higher than DR_5 may lead to connectivity loss."
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#endif
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/*!
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 * Second reception window channel frequency definition.
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 */
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#define KR920_RX_WND_2_FREQ                         921900000
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/*!
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 * Second reception window channel datarate definition.
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 */
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#define KR920_RX_WND_2_DR                           DR_0
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/*!
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 * Band 0 definition
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 * { DutyCycle, TxMaxPower, LastJoinTxDoneTime, LastTxDoneTime, TimeOff }
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 */
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static const band_t KR920_BAND0 = { 1 , KR920_MAX_TX_POWER, 0, 0, 0 }; //  100.0 %
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/*!
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 * LoRaMac default channel 1
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 * Channel = { Frequency [Hz], RX1 Frequency [Hz], { ( ( DrMax << 4 ) | DrMin ) }, Band }
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 */
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static const channel_params_t KR920_LC1 = { 922100000, 0, { ( ( DR_5 << 4 ) | DR_0 ) }, 0 };
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/*!
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 * LoRaMac default channel 2
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 * Channel = { Frequency [Hz], RX1 Frequency [Hz], { ( ( DrMax << 4 ) | DrMin ) }, Band }
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 */
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static const channel_params_t KR920_LC2 = { 922300000, 0, { ( ( DR_5 << 4 ) | DR_0 ) }, 0 };
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/*!
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 * LoRaMac default channel 3
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 * Channel = { Frequency [Hz], RX1 Frequency [Hz], { ( ( DrMax << 4 ) | DrMin ) }, Band }
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 */
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static const channel_params_t KR920_LC3 = { 922500000, 0, { ( ( DR_5 << 4 ) | DR_0 ) }, 0 };
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/*!
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 * LoRaMac channels which are allowed for the join procedure
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 */
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#define KR920_JOIN_CHANNELS                         ( uint16_t )( LC( 1 ) | LC( 2 ) | LC( 3 ) )
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/*!
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 * RSSI threshold for a free channel [dBm]
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 */
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#define KR920_RSSI_FREE_TH                          -65
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/*!
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 * Specifies the time the node performs a carrier sense
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 */
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#define KR920_CARRIER_SENSE_TIME                    6
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/*!
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 * Data rates table definition
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 */
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static const uint8_t datarates_KR920[]  = { 12, 11, 10,  9,  8,  7 };
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/*!
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 * Bandwidths table definition in Hz
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 */
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static const uint32_t bandwidths_KR920[] = { 125000, 125000, 125000, 125000, 125000, 125000 };
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/*!
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 * Maximum payload with respect to the datarate index. Can operate with and without a repeater.
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 */
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static const uint8_t max_payloads_KR920[] = { 51, 51, 51, 115, 242, 242 };
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/*!
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 * Maximum payload with respect to the datarate index. Can operate with repeater.
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 */
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static const uint8_t max_payloads_with_repeater_KR920[] = { 51, 51, 51, 115, 222, 222 };
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LoRaPHYKR920::LoRaPHYKR920(LoRaWANTimeHandler &lora_time)
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    : LoRaPHY(lora_time)
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{
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    bands[0] = KR920_BAND0;
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    // Channels
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    channels[0] = KR920_LC1;
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    channels[1] = KR920_LC2;
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    channels[2] = KR920_LC3;
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    // Initialize the channels default mask
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    default_channel_mask[0] = LC( 1 ) + LC( 2 ) + LC( 3 );
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    // Update the channels mask
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    copy_channel_mask(channel_mask, default_channel_mask, KR920_CHANNEL_MASK_SIZE);
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    // set default channels
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    phy_params.channels.channel_list = channels;
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    phy_params.channels.channel_list_size = KR920_MAX_NB_CHANNELS;
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    phy_params.channels.mask = channel_mask;
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    phy_params.channels.default_mask = default_channel_mask;
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    phy_params.channels.mask_size = KR920_CHANNEL_MASK_SIZE;
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    // set bands for KR920 spectrum
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    phy_params.bands.table = (void *) bands;
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    phy_params.bands.size = KR920_MAX_NB_BANDS;
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    // set bandwidths available in KR920 spectrum
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    phy_params.bandwidths.table = (void *) bandwidths_KR920;
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    phy_params.bandwidths.size = 6;
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    // set data rates available in KR920 spectrum
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    phy_params.datarates.table = (void *) datarates_KR920;
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    phy_params.datarates.size = 6;
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    // set payload sizes with respect to data rates
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    phy_params.payloads.table = (void *) max_payloads_KR920;
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    phy_params.payloads.size = 6;
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    phy_params.payloads_with_repeater.table = (void *) max_payloads_with_repeater_KR920;
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    phy_params.payloads_with_repeater.size = 6;
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    // dwell time setting
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    phy_params.ul_dwell_time_setting = 0;
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    phy_params.dl_dwell_time_setting = 0;
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    // set initial and default parameters
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    phy_params.duty_cycle_enabled = KR920_DUTY_CYCLE_ENABLED;
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    phy_params.accept_tx_param_setup_req = false;
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    phy_params.fsk_supported = false;
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    phy_params.cflist_supported = true;
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    phy_params.dl_channel_req_supported = true;
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    phy_params.custom_channelplans_supported = true;
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    phy_params.default_channel_cnt = KR920_NUMB_DEFAULT_CHANNELS;
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    phy_params.max_channel_cnt = KR920_MAX_NB_CHANNELS;
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    phy_params.cflist_channel_cnt = KR920_NUMB_CHANNELS_CF_LIST;
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    phy_params.min_tx_datarate = KR920_TX_MIN_DATARATE;
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    phy_params.max_tx_datarate = KR920_TX_MAX_DATARATE;
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    phy_params.min_rx_datarate = KR920_RX_MIN_DATARATE;
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    phy_params.max_rx_datarate = KR920_RX_MAX_DATARATE;
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    phy_params.default_datarate = KR920_DEFAULT_DATARATE;
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    phy_params.default_max_datarate = KR920_TX_MAX_DATARATE;
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    phy_params.min_rx1_dr_offset = KR920_MIN_RX1_DR_OFFSET;
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    phy_params.max_rx1_dr_offset = KR920_MAX_RX1_DR_OFFSET;
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    phy_params.default_rx1_dr_offset = KR920_DEFAULT_RX1_DR_OFFSET;
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    phy_params.min_tx_power = KR920_MIN_TX_POWER;
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    phy_params.max_tx_power = KR920_MAX_TX_POWER;
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    phy_params.default_tx_power = KR920_DEFAULT_TX_POWER;
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    phy_params.default_max_eirp = KR920_DEFAULT_MAX_EIRP_HIGH;
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    phy_params.default_antenna_gain = KR920_DEFAULT_ANTENNA_GAIN;
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    phy_params.adr_ack_limit = KR920_ADR_ACK_LIMIT;
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    phy_params.adr_ack_delay = KR920_ADR_ACK_DELAY;
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    phy_params.max_rx_window = KR920_MAX_RX_WINDOW;
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    phy_params.recv_delay1 = KR920_RECEIVE_DELAY1;
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    phy_params.recv_delay2 = KR920_RECEIVE_DELAY2;
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    phy_params.join_channel_mask = KR920_JOIN_CHANNELS;
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    phy_params.join_accept_delay1 = KR920_JOIN_ACCEPT_DELAY1;
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    phy_params.join_accept_delay2 = KR920_JOIN_ACCEPT_DELAY2;
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    phy_params.max_fcnt_gap = KR920_MAX_FCNT_GAP;
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    phy_params.ack_timeout = KR920_ACKTIMEOUT;
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    phy_params.ack_timeout_rnd = KR920_ACK_TIMEOUT_RND;
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    phy_params.rx_window2_datarate = KR920_RX_WND_2_DR;
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    phy_params.rx_window2_frequency = KR920_RX_WND_2_FREQ;
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}
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LoRaPHYKR920::~LoRaPHYKR920()
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{
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}
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int8_t LoRaPHYKR920::get_max_eirp(uint32_t freq)
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{
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    if (freq >= 922100000) {// Limit to 14dBm
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        return KR920_DEFAULT_MAX_EIRP_HIGH;
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    }
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    // Limit to 10dBm
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    return KR920_DEFAULT_MAX_EIRP_LOW;
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}
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bool LoRaPHYKR920::verify_frequency(uint32_t freq)
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{
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    uint32_t tmp_freq = freq;
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    _radio->lock();
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    if (_radio->check_rf_frequency(tmp_freq) == false) {
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        _radio->unlock();
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        return false;
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    }
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    _radio->unlock();
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    // Verify if the frequency is valid. The frequency must be in a specified
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    // range and can be set to specific values.
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    if ((tmp_freq >= 920900000) && (tmp_freq <=923300000)) {
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        // Range ok, check for specific value
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        tmp_freq -= 920900000;
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        if ((tmp_freq % 200000) == 0) {
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            return true;
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        }
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    }
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    return false;
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}
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bool LoRaPHYKR920::tx_config(tx_config_params_t* config, int8_t* tx_power,
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                             lorawan_time_t* tx_toa)
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{
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    int8_t phy_dr = datarates_KR920[config->datarate];
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    if (config->tx_power > bands[channels[config->channel].band].max_tx_pwr) {
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        config->tx_power = bands[channels[config->channel].band].max_tx_pwr;
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    }
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    uint32_t bandwidth = get_bandwidth(config->datarate);
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    float max_eirp = get_max_eirp(channels[config->channel].frequency);
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    int8_t phy_tx_power = 0;
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    // Take the minimum between the max_eirp and txConfig->MaxEirp.
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    // The value of txConfig->MaxEirp could have changed during runtime, e.g. due to a MAC command.
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    max_eirp = MIN(config->max_eirp, max_eirp);
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    // Calculate physical TX power
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    phy_tx_power = compute_tx_power(config->tx_power, max_eirp, config->antenna_gain);
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    // Setup the radio frequency
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    _radio->lock();
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    _radio->set_channel(channels[config->channel].frequency);
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    _radio->set_tx_config(MODEM_LORA, phy_tx_power, 0, bandwidth, phy_dr, 1, 8,
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                          false, true, 0, 0, false, 3000 );
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    // Setup maximum payload lenght of the radio driver
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    _radio->set_max_payload_length(MODEM_LORA, config->pkt_len);
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    // Get the time-on-air of the next tx frame
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    *tx_toa =_radio->time_on_air(MODEM_LORA, config->pkt_len);
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    _radio->unlock();
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    *tx_power = config->tx_power;
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    return true;
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}
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lorawan_status_t LoRaPHYKR920::set_next_channel(channel_selection_params_t* params,
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                                                uint8_t* channel, lorawan_time_t* time,
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                                                lorawan_time_t* aggregate_timeoff)
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{
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    uint8_t next_channel_idx = 0;
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    uint8_t nb_enabled_channels = 0;
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    uint8_t delay_tx = 0;
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    uint8_t enabled_channels[KR920_MAX_NB_CHANNELS] = {0};
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    lorawan_time_t nextTxDelay = 0;
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    if (num_active_channels(channel_mask, 0, 1) == 0) {
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        // Reactivate default channels
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        channel_mask[0] |= LC(1) + LC(2) + LC(3);
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    }
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    if (params->aggregate_timeoff <= _lora_time.get_elapsed_time(params->last_aggregate_tx_time)) {
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        // Reset Aggregated time off
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        *aggregate_timeoff = 0;
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 | 
						|
        // Update bands Time OFF
 | 
						|
        nextTxDelay = update_band_timeoff(params->joined, params->dc_enabled,
 | 
						|
                                          bands, KR920_MAX_NB_BANDS);
 | 
						|
 | 
						|
        // Search how many channels are enabled
 | 
						|
        nb_enabled_channels = enabled_channel_count(params->joined, params->current_datarate,
 | 
						|
                                                     channel_mask,
 | 
						|
                                                     enabled_channels, &delay_tx);
 | 
						|
    } else {
 | 
						|
        delay_tx++;
 | 
						|
        nextTxDelay = params->aggregate_timeoff - _lora_time.get_elapsed_time(params->last_aggregate_tx_time);
 | 
						|
    }
 | 
						|
 | 
						|
    if (nb_enabled_channels > 0) {
 | 
						|
 | 
						|
        for (uint8_t  i = 0, j = get_random(0, nb_enabled_channels - 1);
 | 
						|
                      i < KR920_MAX_NB_CHANNELS; i++) {
 | 
						|
            next_channel_idx = enabled_channels[j];
 | 
						|
            j = ( j + 1 ) % nb_enabled_channels;
 | 
						|
 | 
						|
            // Perform carrier sense for KR920_CARRIER_SENSE_TIME
 | 
						|
            // If the channel is free, we can stop the LBT mechanism
 | 
						|
            _radio->lock();
 | 
						|
 | 
						|
            if (_radio->perform_carrier_sense(MODEM_LORA,
 | 
						|
                                              channels[next_channel_idx].frequency,
 | 
						|
                                              KR920_RSSI_FREE_TH,
 | 
						|
                                              KR920_CARRIER_SENSE_TIME ) == true) {
 | 
						|
                // Free channel found
 | 
						|
                *channel = next_channel_idx;
 | 
						|
                *time = 0;
 | 
						|
                _radio->unlock();
 | 
						|
                return LORAWAN_STATUS_OK;
 | 
						|
            }
 | 
						|
 | 
						|
            _radio->unlock();
 | 
						|
        }
 | 
						|
 | 
						|
        return LORAWAN_STATUS_NO_FREE_CHANNEL_FOUND;
 | 
						|
 | 
						|
    } else {
 | 
						|
 | 
						|
        if (delay_tx > 0) {
 | 
						|
            // Delay transmission due to AggregatedTimeOff or to a band time off
 | 
						|
            *time = nextTxDelay;
 | 
						|
            return LORAWAN_STATUS_DUTYCYCLE_RESTRICTED;
 | 
						|
        }
 | 
						|
 | 
						|
        // Datarate not supported by any channel, restore defaults
 | 
						|
        channel_mask[0] |= LC(1) + LC(2) + LC(3);
 | 
						|
        *time = 0;
 | 
						|
        return LORAWAN_STATUS_NO_CHANNEL_FOUND;
 | 
						|
    }
 | 
						|
}
 | 
						|
 | 
						|
void LoRaPHYKR920::set_tx_cont_mode(cw_mode_params_t* params, uint32_t given_frequency)
 | 
						|
{
 | 
						|
    (void)given_frequency;
 | 
						|
 | 
						|
    if (params->tx_power > bands[channels[params->channel].band].max_tx_pwr) {
 | 
						|
        params->tx_power = bands[channels[params->channel].band].max_tx_pwr;
 | 
						|
    }
 | 
						|
 | 
						|
    float max_eirp = get_max_eirp(channels[params->channel].frequency);
 | 
						|
    int8_t phy_tx_power = 0;
 | 
						|
    uint32_t frequency = channels[params->channel].frequency;
 | 
						|
 | 
						|
    // Take the minimum between the max_eirp and params->max_eirp.
 | 
						|
    // The value of params->max_eirp could have changed during runtime,
 | 
						|
    // e.g. due to a MAC command.
 | 
						|
    max_eirp = MIN (params->max_eirp, max_eirp);
 | 
						|
 | 
						|
    // Calculate physical TX power
 | 
						|
    phy_tx_power = compute_tx_power(params->tx_power, max_eirp, params->antenna_gain);
 | 
						|
 | 
						|
    _radio->lock();
 | 
						|
    _radio->set_tx_continuous_wave(frequency, phy_tx_power, params->timeout);
 | 
						|
    _radio->unlock();
 | 
						|
}
 | 
						|
 |