252 lines
7.7 KiB
Matlab
252 lines
7.7 KiB
Matlab
function rtpAnalyze( input_file )
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%RTP_ANALYZE Analyze RTP stream(s) from a txt file
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% The function takes the output from the command line tool rtp_analyze
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% and analyzes the stream(s) therein. First, process your rtpdump file
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% through rtp_analyze (from command line):
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% $ out/Debug/rtp_analyze my_file.rtp my_file.txt
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% Then load it with this function (in Matlab):
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% >> rtpAnalyze('my_file.txt')
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% Copyright (c) 2015 The WebRTC project authors. All Rights Reserved.
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%
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% Use of this source code is governed by a BSD-style license
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% that can be found in the LICENSE file in the root of the source
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% tree. An additional intellectual property rights grant can be found
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% in the file PATENTS. All contributing project authors may
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% be found in the AUTHORS file in the root of the source tree.
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[SeqNo,TimeStamp,ArrTime,Size,PT,M,SSRC] = importfile(input_file);
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%% Filter out RTCP packets.
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% These appear as RTP packets having payload types 72 through 76.
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ix = not(ismember(PT, 72:76));
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fprintf('Removing %i RTCP packets\n', length(SeqNo) - sum(ix));
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SeqNo = SeqNo(ix);
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TimeStamp = TimeStamp(ix);
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ArrTime = ArrTime(ix);
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Size = Size(ix);
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PT = PT(ix);
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M = M(ix);
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SSRC = SSRC(ix);
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%% Find streams.
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[uSSRC, ~, uix] = unique(SSRC);
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% If there are multiple streams, select one and purge the other
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% streams from the data vectors. If there is only one stream, the
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% vectors are good to use as they are.
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if length(uSSRC) > 1
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for i=1:length(uSSRC)
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uPT = unique(PT(uix == i));
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fprintf('%i: %s (%d packets, pt: %i', i, uSSRC{i}, ...
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length(find(uix==i)), uPT(1));
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if length(uPT) > 1
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fprintf(', %i', uPT(2:end));
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end
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fprintf(')\n');
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end
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sel = input('Select stream number: ');
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if sel < 1 || sel > length(uSSRC)
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error('Out of range');
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end
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ix = find(uix == sel);
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% This is where the data vectors are trimmed.
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SeqNo = SeqNo(ix);
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TimeStamp = TimeStamp(ix);
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ArrTime = ArrTime(ix);
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Size = Size(ix);
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PT = PT(ix);
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M = M(ix);
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SSRC = SSRC(ix);
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end
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%% Unwrap SeqNo and TimeStamp.
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SeqNoUW = maxUnwrap(SeqNo, 65535);
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TimeStampUW = maxUnwrap(TimeStamp, 4294967295);
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%% Generate some stats for the stream.
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fprintf('Statistics:\n');
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fprintf('SSRC: %s\n', SSRC{1});
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uPT = unique(PT);
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if length(uPT) > 1
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warning('This tool cannot yet handle changes in codec sample rate');
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end
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fprintf('Payload type(s): %i', uPT(1));
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if length(uPT) > 1
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fprintf(', %i', uPT(2:end));
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end
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fprintf('\n');
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fprintf('Packets: %i\n', length(SeqNo));
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SortSeqNo = sort(SeqNoUW);
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fprintf('Missing sequence numbers: %i\n', ...
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length(find(diff(SortSeqNo) > 1)));
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fprintf('Duplicated packets: %i\n', length(find(diff(SortSeqNo) == 0)));
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reorderIx = findReorderedPackets(SeqNoUW);
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fprintf('Reordered packets: %i\n', length(reorderIx));
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tsdiff = diff(TimeStampUW);
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tsdiff = tsdiff(diff(SeqNoUW) == 1);
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[utsdiff, ~, ixtsdiff] = unique(tsdiff);
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fprintf('Common packet sizes:\n');
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for i = 1:length(utsdiff)
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fprintf(' %i samples (%i%%)\n', ...
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utsdiff(i), ...
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round(100 * length(find(ixtsdiff == i))/length(ixtsdiff)));
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end
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%% Trying to figure out sample rate.
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fs_est = (TimeStampUW(end) - TimeStampUW(1)) / (ArrTime(end) - ArrTime(1));
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fs_vec = [8, 16, 32, 48];
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fs = 0;
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for f = fs_vec
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if abs((fs_est-f)/f) < 0.05 % 5% margin
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fs = f;
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break;
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end
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end
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if fs == 0
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fprintf('Cannot determine sample rate. I get it to %.2f kHz\n', ...
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fs_est);
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fs = input('Please, input a sample rate (in kHz): ');
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else
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fprintf('Sample rate estimated to %i kHz\n', fs);
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end
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SendTimeMs = (TimeStampUW - TimeStampUW(1)) / fs;
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fprintf('Stream duration at sender: %.1f seconds\n', ...
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(SendTimeMs(end) - SendTimeMs(1)) / 1000);
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fprintf('Stream duration at receiver: %.1f seconds\n', ...
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(ArrTime(end) - ArrTime(1)) / 1000);
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fprintf('Clock drift: %.2f%%\n', ...
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100 * ((ArrTime(end) - ArrTime(1)) / ...
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(SendTimeMs(end) - SendTimeMs(1)) - 1));
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fprintf('Sent average bitrate: %i kbps\n', ...
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round(sum(Size) * 8 / (SendTimeMs(end)-SendTimeMs(1))));
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fprintf('Received average bitrate: %i kbps\n', ...
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round(sum(Size) * 8 / (ArrTime(end)-ArrTime(1))));
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%% Plots.
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delay = ArrTime - SendTimeMs;
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delay = delay - min(delay);
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delayOrdered = delay;
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delayOrdered(reorderIx) = nan; % Set reordered packets to NaN.
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delayReordered = delay(reorderIx); % Pick the reordered packets.
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sendTimeMsReordered = SendTimeMs(reorderIx);
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% Sort time arrays in packet send order.
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[~, sortix] = sort(SeqNoUW);
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SendTimeMs = SendTimeMs(sortix);
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Size = Size(sortix);
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delayOrdered = delayOrdered(sortix);
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figure
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plot(SendTimeMs / 1000, delayOrdered, ...
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sendTimeMsReordered / 1000, delayReordered, 'r.');
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xlabel('Send time [s]');
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ylabel('Relative transport delay [ms]');
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title(sprintf('SSRC: %s', SSRC{1}));
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SendBitrateKbps = 8 * Size(1:end-1) ./ diff(SendTimeMs);
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figure
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plot(SendTimeMs(1:end-1)/1000, SendBitrateKbps);
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xlabel('Send time [s]');
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ylabel('Send bitrate [kbps]');
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end
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%% Subfunctions.
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% findReorderedPackets returns the index to all packets that are considered
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% old compared with the largest seen sequence number. The input seqNo must
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% be unwrapped for this to work.
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function reorderIx = findReorderedPackets(seqNo)
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largestSeqNo = seqNo(1);
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reorderIx = [];
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for i = 2:length(seqNo)
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if seqNo(i) < largestSeqNo
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reorderIx = [reorderIx; i]; %#ok<AGROW>
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else
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largestSeqNo = seqNo(i);
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end
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end
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end
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%% Auto-generated subfunction.
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function [SeqNo,TimeStamp,SendTime,Size,PT,M,SSRC] = ...
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importfile(filename, startRow, endRow)
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%IMPORTFILE Import numeric data from a text file as column vectors.
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% [SEQNO,TIMESTAMP,SENDTIME,SIZE,PT,M,SSRC] = IMPORTFILE(FILENAME) Reads
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% data from text file FILENAME for the default selection.
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%
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% [SEQNO,TIMESTAMP,SENDTIME,SIZE,PT,M,SSRC] = IMPORTFILE(FILENAME,
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% STARTROW, ENDROW) Reads data from rows STARTROW through ENDROW of text
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% file FILENAME.
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%
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% Example:
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% [SeqNo,TimeStamp,SendTime,Size,PT,M,SSRC] =
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% importfile('rtpdump_recv.txt',2, 123);
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%
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% See also TEXTSCAN.
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% Auto-generated by MATLAB on 2015/05/28 09:55:50
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%% Initialize variables.
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if nargin<=2
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startRow = 2;
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endRow = inf;
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end
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%% Format string for each line of text:
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% column1: double (%f)
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% column2: double (%f)
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% column3: double (%f)
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% column4: double (%f)
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% column5: double (%f)
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% column6: double (%f)
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% column7: text (%s)
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% For more information, see the TEXTSCAN documentation.
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formatSpec = '%5f%11f%11f%6f%6f%3f%s%[^\n\r]';
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%% Open the text file.
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fileID = fopen(filename,'r');
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%% Read columns of data according to format string.
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% This call is based on the structure of the file used to generate this
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% code. If an error occurs for a different file, try regenerating the code
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% from the Import Tool.
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dataArray = textscan(fileID, formatSpec, endRow(1)-startRow(1)+1, ...
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'Delimiter', '', 'WhiteSpace', '', 'HeaderLines', startRow(1)-1, ...
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'ReturnOnError', false);
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for block=2:length(startRow)
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frewind(fileID);
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dataArrayBlock = textscan(fileID, formatSpec, ...
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endRow(block)-startRow(block)+1, 'Delimiter', '', 'WhiteSpace', ...
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'', 'HeaderLines', startRow(block)-1, 'ReturnOnError', false);
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for col=1:length(dataArray)
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dataArray{col} = [dataArray{col};dataArrayBlock{col}];
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end
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end
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%% Close the text file.
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fclose(fileID);
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%% Post processing for unimportable data.
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% No unimportable data rules were applied during the import, so no post
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% processing code is included. To generate code which works for
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% unimportable data, select unimportable cells in a file and regenerate the
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% script.
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%% Allocate imported array to column variable names
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SeqNo = dataArray{:, 1};
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TimeStamp = dataArray{:, 2};
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SendTime = dataArray{:, 3};
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Size = dataArray{:, 4};
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PT = dataArray{:, 5};
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M = dataArray{:, 6};
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SSRC = dataArray{:, 7};
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end
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