mirror of https://github.com/dirtbags/moth.git
Working scoreboard with table
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parent
f043173cf4
commit
1aff408b66
177
src/scoreboard
177
src/scoreboard
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@ -1,30 +1,61 @@
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#! /usr/bin/awk -f
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function output() {
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function qsort(A, left, right, i, last) {
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if (left >= right)
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return
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swap(A, left, left+int((right-left+1)*rand()))
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last = left
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for (i = left+1; i <= right; i++)
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if (A[i] < A[left])
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swap(A, ++last, i)
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swap(A, left, last)
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qsort(A, left, last-1)
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qsort(A, last+1, right)
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}
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function swap(A, i, j, t) {
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t = A[i]; A[i] = A[j]; A[j] = t
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}
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function escape(s) {
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gsub("&", "&", s)
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gsub("<", "<", s)
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gsub(">", ">", s)
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return s
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}
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function output( t, c) {
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for (t in teams) {
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score = 0;
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for (c in points_by_cat) {
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score += points_by_cat_team[c, t] / points_by_cat[c];
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if (points_by_cat[c] > 0) {
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score += points_by_cat_team[c, t] / points_by_cat[c];
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}
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}
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if (score > maxscore) {
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maxscore = score
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}
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if (score > maxscores_by_team[t]) {
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maxscores_by_team[t] = score
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}
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scores_by_team_time[t, lasttime] = score
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}
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timestamps[tslen++] = lasttime
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}
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BEGIN {
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# High-contrast colors for accessibility
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colors[0] = "e41a1c"
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colors[1] = "377eb8"
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colors[2] = "4daf4a"
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colors[3] = "984ea3"
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colors[4] = "ff7f00"
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colors[5] = "ffff33"
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colors[6] = "a65628"
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colors[7] = "f781bf"
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# It took me like 7 hours to find a color palette that worked for
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# people with protanopia. Don't change these colors.
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colors[0] = "33cc33"
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colors[1] = "863a3a"
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colors[2] = "5c5ce6"
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colors[3] = "bfbf4d"
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colors[4] = "408080"
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colors[5] = "b336b2"
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colors[6] = "ffa500"
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colors[7] = "00bfff"
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colors[8] = "8db6cd"
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ncolors = 9
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# Every 2.5 minutes
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interval = 150
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tslen = 0
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@ -52,34 +83,138 @@ BEGIN {
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output()
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# Get team colors and names
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for (team in teams) {
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fn = "/var/lib/ctf/teams/colors/" team ".color"
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getline colors_by_team[team] < fn
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close(fn)
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fn = "/var/lib/ctf/teams/" team
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getline names_by_team[team] < fn
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close(fn)
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}
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# Get team names
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width = lasttime - start
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print "<!DOCTYPE html>"
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print "<html>"
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print " <head>"
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print " <title>foo</title>"
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print " <style type=\"text/css\">"
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print " body { background: black; }"
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print " </style>"
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print " <script type=\"application/javascript\" src=\"file:///home/neale/src/ctf/www/plot.js\"></script>"
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print " <link rel=\"stylesheet\" href=\"ctf.css\" type=\"text/css\">"
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print " <script type=\"application/javascript\" src=\"plot.js\"></script>"
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print " <script type=\"application/javascript\">"
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print "function draw() {"
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printf("p = new Plot(\"chart\", %d, %.2f)\n", width, maxscore * 1.1);
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printf("plot(\"chart\", %d, %.2f, [\n", tslen, maxscore)
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c = 0
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for (team in teams) {
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printf("p.line(\"#%s\",[", colors[c++ % 8])
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if (maxscores_by_team[team] / maxscore < 0.01) continue
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printf("[\"#%s\",[", colors_by_team[team])
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for (i = 1; i < tslen; i += 1) {
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time = timestamps[i]
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printf("[%d,%.2f],",
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time - start, scores_by_team_time[team, time])
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i, scores_by_team_time[team, time])
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}
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printf("]);\n");
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printf("]],\n");
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}
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print "]);"
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print "}"
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print "window.onload = draw;"
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print " </script>"
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print " <style type=\"text/css\">"
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for (team in teams) {
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printf(".t%s { background-color: #%s; }\n",
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team, colors_by_team[team])
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}
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print " </style>"
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print " </head>"
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print " <body>"
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print " <canvas id=\"chart\"></canvas>"
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print " <h1>Scoreboard</h1>"
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print " <table class=\"scoreboard\">"
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print " <tr><th>Overall</th>"
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# Sort categories
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ncats = 0
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for (cat in points_by_cat) {
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cats[ncats++] = cat
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}
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qsort(cats, 0, ncats-1)
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# Print out category names
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for (i = 0; i < ncats; i += 1) {
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cat = cats[i]
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points = points_by_cat[cat]
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if (0 == points) continue
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printf("<th>%s (%d)</th>\n", cat, points)
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}
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print " </tr>"
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print " <tr>"
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print " <td>"
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print " <ol>"
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# Create a sorted list of scores
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nteams = 0
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for (team in teams) {
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scores[nteams++] = scores_by_team_time[team, lasttime]
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}
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qsort(scores, 0, nteams-1)
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# Print out teams, ranked by score
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bottom = nteams - 10
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if (bottom < 0) bottom = 0
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for (i = nteams-1; i >= bottom; i -= 1) {
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if (scores[i] == scores[i-1]) continue;
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for (team in teams) {
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if (scores[i] == scores_by_team_time[team, lasttime]) {
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name = names_by_team[team]
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printf("<li><span class=\"t%s\">%s (%.2f)</span></li>\n",
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team, escape(name), scores[i])
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}
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}
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}
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print " </ol>"
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print " </td>"
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for (i = 0; i < ncats; i += 1) {
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cat = cats[i]
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points = points_by_cat[cat]
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if (0 == points) break;
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print "<td>"
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# Create sorted list of scores in this category
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n = 0
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for (team in teams) {
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l[n++] = points_by_cat_team[cat, team];
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}
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qsort(l, 0, n)
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# Print out teams, ranked by points
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for (j = n; j > 0; j -= 1) {
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if (l[j] == l[j-1]) continue;
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if (0 == l[j]) break;
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for (team in teams) {
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points = points_by_cat_team[cat, team]
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if (l[j] == points) {
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name = names_by_team[team]
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printf("<div class=\"t%s\" style=\"height: %.2f%%; overflow: hidden; color: black; border-top: \">\n",
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team,
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100 * points / points_by_cat[cat],
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colors_by_team[team])
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printf("<!-- category: %s --> %s: %d\n",
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cat, escape(name), points)
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printf("</div>\n")
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}
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}
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}
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print "</td>"
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}
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print " </tr>"
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print " </table>"
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print " <canvas id=\"chart\" width=\"800\" height=\"400\"></canvas>"
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print " </body>"
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print "</html>"
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}
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70
www/plot.js
70
www/plot.js
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function Plot(id, width, height) {
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function dbg(o) {
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e = document.getElementById("debug");
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e.innerHTML = o;
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}
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function torgba(color, alpha) {
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var r = parseInt(color.substring(1,3), 16);
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var g = parseInt(color.substring(3,5), 16);
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var b = parseInt(color.substring(5,7), 16);
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return "rgba(" + r + "," + g + "," + b + "," + alpha + ")";
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}
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function plot(id, width, height, lines) {
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var canvas = document.getElementById(id);
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var ctx = canvas.getContext('2d');
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canvas.width = 800;
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canvas.height = 200;
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// We'll let the canvas do all the tricksy math
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xscale = canvas.width/width;
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yscale = canvas.height/height;
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ctx.lineWidth = 2;
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var xscale = canvas.width/width;
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var yscale = canvas.height/height;
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var nlines = lines.length;
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function moveTo(x, y) {
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ctx.moveTo(Math.round(x * xscale), Math.round(y * yscale));
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ctx.moveTo(Math.round(x * xscale), Math.round((height - y) * yscale));
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}
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function lineTo(x, y) {
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ctx.lineTo(Math.round(x * xscale), Math.round(y * yscale));
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ctx.lineTo(Math.round(x * xscale), Math.round((height - y) * yscale));
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}
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function draw(values) {
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ctx.beginPath();
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moveTo(values[0][0], height);
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function draw(line) {
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var color = line[0];
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var values = line[1];
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var lasty = 0;
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ctx.strokeStyle = torgba(color, 0.99);
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ctx.lineWidth = 2;
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ctx.beginPath();
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moveTo(values[0][0], 0);
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for (i in values) {
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var x = values[i][0];
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var y = values[i][1];
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lineTo(x, height - lasty);
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lineTo(x, height - y);
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lineTo(x, lasty);
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lineTo(x, y);
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lasty = y;
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}
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lineTo(width, height - lasty);
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}
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this.line = function(color, values) {
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ctx.fillStyle = color;
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ctx.strokeStyle = color;
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draw(values);
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lineTo(width, lasty);
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ctx.stroke();
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}
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var cur = 0;
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function update() {
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var line = lines[cur];
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draw(line);
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cur = (cur + 1) % nlines;
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if (cur > 0) {
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setTimeout(update, 66);
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}
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}
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update()
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}
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