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https://github.com/DJ2LS/FreeDATA
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ARQ Go-Back-N
ARQ Go-Back-N now working even if frames are odd to frames per burst.
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fde5754607
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79
arq.py
79
arq.py
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@ -18,17 +18,12 @@ import modem
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import other
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modem = modem.RF()
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crc_algorithm = crcengine.new('crc16-ccitt-false') #load crc16 library
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static.ARQ_PAYLOAD_PER_FRAME = static.FREEDV_PAYLOAD_PER_FRAME - 6
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#class ARQ():
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#
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# def receive(bytes_in):
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#
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# print("TEST")
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def data_received(data_in):
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@ -36,6 +31,13 @@ def data_received(data_in):
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ARQ_N_RX_BURSTS = int.from_bytes(bytes(data_in[:1]), "big") - 10
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static.ARQ_RX_BUFFER.append(data_in) #append data to RX BUFFER
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print(ARQ_N_RX_BURSTS)
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#while static.ACK_RX_TIMEOUT == 0: #define timeout where data has to be received untl error occurs
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if len(static.ARQ_RX_BUFFER) == ARQ_N_RX_BURSTS: #if received bursts are equal to burst number in frame
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burst_total_payload = bytearray()
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@ -52,6 +54,7 @@ def data_received(data_in):
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if burst_payload_crc == data_in[1:3]: #IF burst payload crc and input crc are equal
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print(data_in[1:3])
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print("CRC EQUAL")
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logging.info("TX | SENDING ACK [" + str(data_in[1:3]) +"]")
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@ -62,11 +65,11 @@ def data_received(data_in):
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ack_buffer = bytearray(static.ARQ_PAYLOAD_PER_FRAME)
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ack_buffer[:len(ack_frame)] = ack_frame # set buffersize to length of data which will be send
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#TRANSMIT ACK FRAME -----------------------------------------------
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time.sleep(2)
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modem.Transmit(ack_buffer)
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static.ARQ_RX_BUFFER = []
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else: #IF burst payload crc and input crc are NOT equal
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print("CRC NOT EQUAL!!!!!")
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print(data_in[1:3])
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@ -91,33 +94,71 @@ def transmit(data_out):
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static.TX_BUFFER = [data_out[i:i+static.ARQ_PAYLOAD_PER_FRAME] for i in range(0, len(data_out), static.ARQ_PAYLOAD_PER_FRAME)] # split incomming bytes to size of 30bytes - arq payload
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static.TX_BUFFER_SIZE = len(static.TX_BUFFER)
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static.ARQ_TX_N_FRAMES = n_frames_per_burst(len(data_out)) # DEFINE NUMBER OF FRAMES PER BURSTS
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logging.info("TX | TOTAL PAYLOAD BYTES/FRAMES TO SEND: " + str(len(data_out)) + " / " + str(static.TX_BUFFER_SIZE))
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#print(static.TX_BUFFER[2])
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for n_raw_frame in range(0, static.TX_BUFFER_SIZE, static.ARQ_TX_N_FRAMES): # LOOP THROUGH DATA LIST with steps = ARQ_TX_N_FRAMES
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print("N_RAW_FRAME: " + str(n_raw_frame))
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## check, if we have to adjust burst frames
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#if (n_raw_frame % static.TX_BUFFER_SIZE) != 0:
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# static.ARQ_TX_N_FRAMES = (n_raw_frame % static.TX_BUFFER_SIZE)
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# print(static.ARQ_TX_N_FRAMES)
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# ----------- GENERATE PAYLOAD CRC FOR ARQ_TX_N_FRAMES
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burst_total_payload = bytearray()
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#----------------------------------------------------------------------------------------------------------
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try: # DETECT IF LAST BURST
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for i in range(static.ARQ_TX_N_FRAMES): #bytearray(b'111111111111111111111111222222222222222222222222')
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# we need to make sure, payload data is always as long as static.ARQ_PAYLOAD_PER_FRAME beacuse of CRC!
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burst_raw_payload = static.TX_BUFFER[n_raw_frame + i]
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burst_payload = bytearray(static.ARQ_PAYLOAD_PER_FRAME)
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burst_payload[:len(burst_raw_payload)] = burst_raw_payload # set buffersize to length of data which will be send
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burst_total_payload = burst_total_payload + burst_payload
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except IndexError: # IF LAST BURST DETECTED BUILD CRC WITH LESS FRAMES AND SET static.ARQ_TX_N_FRAMES TO VALUE OF REST!
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print("LAST BURST!!!")
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burst_total_payload = bytearray() # reset burst_total_payload because of possible input remaining of detecting loop one step above
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n_last_burst = (static.TX_BUFFER_SIZE % n_raw_frame)
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print(n_last_burst)
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static.ARQ_TX_N_FRAMES = n_last_burst
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for i in range(n_last_burst): #bytearray(b'111111111111111111111111222222222222222222222222')
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burst_raw_payload = static.TX_BUFFER[n_raw_frame + i]
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burst_payload = bytearray(static.ARQ_PAYLOAD_PER_FRAME)
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burst_payload[:len(burst_raw_payload)] = burst_raw_payload # set buffersize to length of data which will be send
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burst_total_payload = burst_total_payload + burst_payload
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#----------------------------------------------------------------------------------------------------------
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print(burst_total_payload)
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burst_payload_crc = crc_algorithm(burst_total_payload)
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burst_payload_crc = burst_payload_crc.to_bytes(2, byteorder='big')
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print(burst_payload_crc)
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static.ARQ_ACK_WAITING_FOR_ID = burst_payload_crc #set the global variable so we know for which ACK we are waiting for
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#----------------------------------------------------------------------------------------------------------
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#-------------------- BUILD ARQBURSTS
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arqburst = []
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for i in range(static.ARQ_TX_N_FRAMES):
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frame_type = 10 + static.ARQ_TX_N_FRAMES
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frame_type = bytes([frame_type])
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@ -130,6 +171,8 @@ def transmit(data_out):
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arqburst.append(buffer)
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#----------------------------------------------------------------------------------------------------------
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#--------------------------------------------- N ATTEMPTS TO SEND BURSTS IF ACK FAILS
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for static.TX_N_RETRIES in range(static.TX_N_MAX_RETRIES):
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@ -137,6 +180,7 @@ def transmit(data_out):
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static.ACK_RECEIVED = 0
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# ----------------------- Loop through ARQ FRAMES BUFFER with N = Numbers of frames which will be send at once
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for n in range(static.ARQ_TX_N_FRAMES):
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logging.info("TX | SENDING BURST " + str(n+1) + " / " + str(static.ARQ_TX_N_FRAMES))
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modem.Transmit(arqburst[n])
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@ -172,4 +216,21 @@ def transmit(data_out):
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if n_raw_frame == static.TX_BUFFER_SIZE:
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break
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# ------------ TIMER TO WAIT UNTIL NEXT PACKAGE WILL BE SEND TO PREVENT TIME ISSEUS
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time.sleep(5)
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logging.info("TX | BUFFER EMPTY")
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# BURST MACHINE TO DEFINE N BURSTS PER FRAME
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def n_frames_per_burst(len_data):
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if len_data <= static.ARQ_PAYLOAD_PER_FRAME:
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n_frames_per_burst = 1
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else:
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n_frames_per_burst = 3
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return n_frames_per_burst
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