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https://github.com/markqvist/Reticulum.git
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Updated buffer tests for windowed channel
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parent
e184861822
commit
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@ -4,6 +4,7 @@ import subprocess
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import shlex
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import shlex
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import threading
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import threading
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import time
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import time
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import random
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from unittest import skipIf
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from unittest import skipIf
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import RNS
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import RNS
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import os
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import os
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@ -23,6 +24,8 @@ fixed_keys = [
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("08bb35f92b06a0832991165a0d9b4fd91af7b7765ce4572aa6222070b11b767092b61b0fd18b3a59cae6deb9db6d4bfb1c7fcfe076cfd66eea7ddd5f877543b9", "d13712efc45ef87674fb5ac26c37c912"),
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("08bb35f92b06a0832991165a0d9b4fd91af7b7765ce4572aa6222070b11b767092b61b0fd18b3a59cae6deb9db6d4bfb1c7fcfe076cfd66eea7ddd5f877543b9", "d13712efc45ef87674fb5ac26c37c912"),
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]
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]
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BUFFER_TEST_TARGET = 32000
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def targets_job(caller):
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def targets_job(caller):
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cmd = "python -c \"from tests.link import targets; targets()\""
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cmd = "python -c \"from tests.link import targets; targets()\""
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print("Opening subprocess for "+str(cmd)+"...", RNS.LOG_VERBOSE)
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print("Opening subprocess for "+str(cmd)+"...", RNS.LOG_VERBOSE)
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@ -455,7 +458,7 @@ class TestLink(unittest.TestCase):
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# @skipIf(os.getenv('SKIP_NORMAL_TESTS') != None and os.getenv('RUN_SLOW_TESTS') == None, "Skipping")
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# @skipIf(os.getenv('SKIP_NORMAL_TESTS') != None and os.getenv('RUN_SLOW_TESTS') == None, "Skipping")
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def test_12_buffer_round_trip_big(self, local_bitrate = None):
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def test_12_buffer_round_trip_big(self, local_bitrate = None):
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global c_rns
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global c_rns, buffer_read_target
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init_rns(self)
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init_rns(self)
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print("")
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print("")
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print("Buffer round trip test")
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print("Buffer round trip test")
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@ -490,9 +493,9 @@ class TestLink(unittest.TestCase):
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buffer = None
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buffer = None
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received = []
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received = []
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def handle_data(ready_bytes: int):
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def handle_data(ready_bytes: int):
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# TODO: Remove
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global received_bytes
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RNS.log("Handling data")
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data = buffer.read(ready_bytes)
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data = buffer.read(ready_bytes)
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received.append(data)
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received.append(data)
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@ -509,10 +512,11 @@ class TestLink(unittest.TestCase):
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if local_interface.bitrate < 1000:
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if local_interface.bitrate < 1000:
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target_bytes = 3000
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target_bytes = 3000
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else:
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else:
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target_bytes = 16000
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target_bytes = BUFFER_TEST_TARGET
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random.seed(154889)
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message = os.urandom(target_bytes)
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message = random.randbytes(target_bytes)
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buffer_read_target = len(message)
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# the return message will have an appendage string " back at you"
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# the return message will have an appendage string " back at you"
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# for every StreamDataMessage that arrives. To verify, we need
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# for every StreamDataMessage that arrives. To verify, we need
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@ -527,35 +531,24 @@ class TestLink(unittest.TestCase):
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# since the segments will be received at max length for a
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# since the segments will be received at max length for a
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# StreamDataMessage, the appended text will end up in a
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# StreamDataMessage, the appended text will end up in a
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# separate packet.
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# separate packet.
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expected_chunk_count = ceil(len(message)/StreamDataMessage.MAX_DATA_LEN * 2)-1
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print("Sending " + str(len(message)) + " bytes, receiving " + str(len(expected_rx_message)) + " bytes, ")
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print("Sending " + str(len(message)) + " bytes, receiving " + str(len(expected_rx_message)) + " bytes, " +
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"expecting " + str(expected_chunk_count) + " chunks of " + str(StreamDataMessage.MAX_DATA_LEN) + " bytes")
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buffer.write(message)
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buffer.write(message)
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buffer.flush()
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buffer.flush()
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# delay a reasonable time for the send and receive
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timeout = time.time() + 4
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# a chunk each way plus a little more for a proof each way
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while not time.time() > timeout:
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# while time.time() < expected_ready_time and len(received) < expected_chunk_count:
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time.sleep(1)
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# time.sleep(0.1)
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print(f"Received {len(received)} chunks so far")
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# # sleep for at least one more chunk round trip in case there
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time.sleep(1)
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# # are more chunks than expected
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# if time.time() < expected_ready_time:
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# time.sleep(max(c_rns.MTU * 2 / local_interface.bitrate * 8, 1))
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timeout = time.time() + 10
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while len(received) < expected_chunk_count and not time.time() > timeout:
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time.sleep(2)
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print(f"Received {len(received)} out of {expected_chunk_count} chunks so far")
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time.sleep(2)
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print(f"Received {len(received)} out of {expected_chunk_count} chunks")
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data = bytearray()
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data = bytearray()
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for rx in received:
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for rx in received:
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data.extend(rx)
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data.extend(rx)
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rx_message = data
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rx_message = data
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print(f"Received {len(received)} chunks, totalling {len(rx_message)} bytes")
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self.assertEqual(len(expected_rx_message), len(rx_message))
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self.assertEqual(len(expected_rx_message), len(rx_message))
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for i in range(0, len(expected_rx_message)):
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for i in range(0, len(expected_rx_message)):
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self.assertEqual(expected_rx_message[i], rx_message[i])
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self.assertEqual(expected_rx_message[i], rx_message[i])
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@ -598,7 +591,7 @@ class TestLink(unittest.TestCase):
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if __name__ == '__main__':
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if __name__ == '__main__':
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unittest.main(verbosity=1)
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unittest.main(verbosity=1)
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buffer_read_len = 0
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def targets(yp=False):
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def targets(yp=False):
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if yp:
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if yp:
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import yappi
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import yappi
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@ -645,10 +638,26 @@ def targets(yp=False):
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buffer = None
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buffer = None
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response_data = []
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def handle_buffer(ready_bytes: int):
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def handle_buffer(ready_bytes: int):
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global buffer_read_len, BUFFER_TEST_TARGET
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data = buffer.read(ready_bytes)
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data = buffer.read(ready_bytes)
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buffer_read_len += len(data)
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response_data.append(data)
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if data == "Hi there".encode("utf-8"):
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RNS.log("Sending response")
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for data in response_data:
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buffer.write(data + " back at you".encode("utf-8"))
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buffer.write(data + " back at you".encode("utf-8"))
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buffer.flush()
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buffer.flush()
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buffer_read_len = 0
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if buffer_read_len == BUFFER_TEST_TARGET:
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RNS.log("Sending response")
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for data in response_data:
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buffer.write(data + " back at you".encode("utf-8"))
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buffer.flush()
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buffer_read_len = 0
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buffer = RNS.Buffer.create_bidirectional_buffer(0, 0, channel, handle_buffer)
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buffer = RNS.Buffer.create_bidirectional_buffer(0, 0, channel, handle_buffer)
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