145 lines
4.3 KiB
Matlab
145 lines
4.3 KiB
Matlab
tablename = 'C:\Users\Silas\Documents\latex\JLT_400G_submission\HighSpeedExperiments_oneandonly_csv.csv';
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% Returns a Table
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data = readtable(tablename,"Delimiter",';','DecimalSeparator',',');
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%% ============================================================
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% PLOT
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% ============================================================
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%% 1. DATA EXTRACTION & SETUP
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%% 1. DATA EXTRACTION & SETUP
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raw_M = data.M;
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raw_baud = data.BaudRate;
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raw_net = data.NetRate;
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raw_codes = string(data.ZoteroCode);
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raw_names = string(data.Name);
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raw_band = string(data.Band);
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% Filter Valid Data
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target_M = [2, 4, 6, 8];
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validIdx = ismember(raw_M, target_M) & ~isnan(raw_baud) & ~isnan(raw_net);
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Mvals = raw_M(validIdx);
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baud = raw_baud(validIdx);
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netrate = raw_net(validIdx);
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codes = raw_codes(validIdx);
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names = raw_names(validIdx);
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bands = raw_band(validIdx);
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pam_list = target_M;
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colors = flip(cbrewer2('SET1',4));
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%% 2. PLOT (For Visual Check only)
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figure; hold on;
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ms = 20;
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lw = 0.5;
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for k = 1:length(pam_list)
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M = pam_list(k);
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idxPam = (Mvals == M);
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x = baud(idxPam);
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y = netrate(idxPam);
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b = bands(idxPam);
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n = names(idxPam);
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col = colors(k,:);
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firstLegend = true;
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for i = 1:sum(idxPam)
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% Marker Logic
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ms = 20;
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if strcmpi(b(i), 'O')
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marker = 'o';
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elseif strcmpi(b(i), 'C')
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marker = 'd';
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else
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marker = 's';
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end
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if strcmpi(n(i), 'THIS WORK')
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marker = 'pentagram';
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ms = 100;
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end
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% Plot Scatter
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if firstLegend
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scatter(x(i), y(i), ms, 'Marker', marker, ...
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'MarkerEdgeColor', col, 'MarkerFaceColor', col, ...
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'DisplayName', sprintf('PAM-%d', M));
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firstLegend = false;
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else
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scatter(x(i), y(i), ms, 'Marker', marker, ...
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'MarkerEdgeColor', col, 'MarkerFaceColor', col, ...
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'HandleVisibility','off');
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end
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end
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% Fit lines
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if length(x) >= 3
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[p, S, mu] = polyfit(x, y, 2);
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xfit = linspace(min(x), max(x), 200);
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yfit = polyval(p, xfit, S, mu);
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plot(xfit, yfit, '-', 'LineWidth', lw, 'Color', col, 'HandleVisibility', 'off');
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end
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end
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grid on; box on;
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xlabel('Baud rate [GBd]');
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ylabel('Net rate [Gb/s]');
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% title('Check Command Window for TikZ Code');
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% legend('Location','northwest');
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%% 3. GENERATE TIKZ ANNOTATION CODE
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% This prints the manual \draw commands to the console
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%% GENERATE TIKZ ANNOTATION CODE
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% This prints the manual \draw commands to the console
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%% GENERATE TIKZ ANNOTATION CODE (Colored Borders + Tiny Font)
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%% GENERATE TIKZ ANNOTATION CODE (No Arrow, Close Text)
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fprintf('\n\n%% ===========================================================\n');
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fprintf('%% COPY THE FOLLOWING LINES INTO YOUR .TEX FILE \n');
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fprintf('%% (Paste them just before \\end{axis})\n');
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fprintf('%% ===========================================================\n\n');
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for i = 1:length(baud)
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bx = baud(i);
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by = netrate(i);
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key = codes(i);
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M_val = Mvals(i);
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% --- PLACEMENT LOGIC ---
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if M_val == 8
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% PAM-8: Place Top-Left
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% 'south east' anchor means the text's bottom-right corner touches the coordinate
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% shift moves it slightly up and left to clear the marker
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anchorStr = 'south east';
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shiftStr = 'shift={(-3pt, 3pt)}';
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else
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% Others: Place Bottom-Right
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% 'north west' anchor means the text's top-left corner touches the coordinate
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% shift moves it slightly down and right
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anchorStr = 'north west';
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shiftStr = 'shift={(3pt, -3pt)}';
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end
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% --- PRINT COMMAND ---
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% Uses \node directly at the coordinate (axis cs:...)
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fprintf('\\node[anchor=%s, %s, font=\\tiny, fill=white, inner sep=1pt] at (axis cs:%.2f, %.2f) {\\cite{%s}};\n', ...
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anchorStr, shiftStr, bx, by, key);
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end
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fprintf('\n')
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%% === EXPORT ===
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outfile = 'C:\Users\Silas\Documents\latex\JLT_400G_submission\media\matlab2tikz\highspeedresults_test.tikz';
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matlab2tikz(outfile, ...
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'width','\fwidth', ...
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'height','\fheight', ...
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'showInfo',false, ...
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'extraAxisOptions',{ ...
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'legend style={font=\footnotesize}', ...
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'legend columns=1' ...
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});
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