make the tics on the y-axis easier readable
People are having trouble to understand durations like 100000 or 2.7E+6 milliseconds. Therefore we are hanging the labels on the y-axis to include the unit in the tic's label. We also use multiples of seconds, minutes, hours and days instead of multiples of 10.
This commit is contained in:
@@ -1,5 +1,6 @@
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package org.lucares.recommind.logs;
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import java.util.Collection;
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import java.util.Comparator;
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import java.util.LinkedHashMap;
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import java.util.List;
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@@ -107,4 +108,14 @@ public interface DataSeries {
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}
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}
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public static long maxValue(final Collection<DataSeries> dataSeries) {
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long result = 0;
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for (final DataSeries series : dataSeries) {
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result = Math.max(result, series.getMaxValue());
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}
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return result;
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}
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}
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@@ -1,11 +1,23 @@
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package org.lucares.recommind.logs;
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import static java.util.concurrent.TimeUnit.DAYS;
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import static java.util.concurrent.TimeUnit.HOURS;
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import static java.util.concurrent.TimeUnit.MINUTES;
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import static java.util.concurrent.TimeUnit.SECONDS;
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import java.util.ArrayList;
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import java.util.Arrays;
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import java.util.Collection;
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import java.util.List;
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import java.util.concurrent.TimeUnit;
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import org.lucares.pdb.plot.api.AxisScale;
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public class GnuplotFileGenerator {
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private static final int KEY_FONT_SIZE = 10;
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private static final int TICKS_FONT_SIZE = 12;
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public String generate(final GnuplotSettings settings, final Collection<DataSeries> dataSeries) {
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final StringBuilder result = new StringBuilder();
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@@ -14,6 +26,10 @@ public class GnuplotFileGenerator {
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settings.getHeight());
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appendfln(result, "set datafile separator \"%s\"", settings.getDatafileSeparator());
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// appendln(result, "set locale \"de_DE.UTF-8\"");
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// appendln(result, "set format y \"%.0f\"");
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appendfln(result, "set tics font \",%d\"", TICKS_FONT_SIZE);
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appendln(result, computeYTicks(settings, dataSeries));
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settings.getAggregate().addGnuplotDefinitions(result, settings.getDatafileSeparator(), dataSeries);
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@@ -37,16 +53,12 @@ public class GnuplotFileGenerator {
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appendfln(result, "set yrange [\"" + graphOffset + "\":]");
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}
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appendfln(result, "set ylabel \"%s\"", settings.getYlabel());
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switch (settings.getYAxisScale()) {
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case LINEAR:
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break;
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case LOG10:
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appendfln(result, "set logscale y");
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break;
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case LOG2:
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appendfln(result, "set logscale y 2");
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break;
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}
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appendfln(result, "set grid");
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@@ -62,7 +74,7 @@ public class GnuplotFileGenerator {
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if (settings.isKeyOutside()) {
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appendfln(result, "set key outside");
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}
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appendfln(result, "set key font \",10\"");
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appendfln(result, "set key font \",%d\"", KEY_FONT_SIZE);
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if (!settings.isRenderLabels()) {
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appendfln(result, "set format x \"\"");
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@@ -82,7 +94,7 @@ public class GnuplotFileGenerator {
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// (horizontal: 1 unit = 10px; vertical: 1 unit = 19px)
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appendln(result, "set lmargin 11"); // margin 11 -> 110px
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appendln(result, "set rmargin 11"); // margin 11 -> 110px
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appendln(result, "set tmargin 3"); // margin 3 -> 57px
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appendln(result, "set tmargin 3"); // margin 3 -> 57px - marker (1)
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appendln(result, "set bmargin 4"); // margin 4 -> 76
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}
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@@ -109,4 +121,158 @@ public class GnuplotFileGenerator {
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builder.append(String.format(format, args));
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}
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private String computeYTicks(final GnuplotSettings settings, final Collection<DataSeries> dataSeries) {
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String result = "";
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final long yRangeMax;
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final long yRangeMin;
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if (settings.hasYRange()) {
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yRangeMax = settings.getYRangeMax();
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yRangeMin = settings.getYRangeMin();
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} else {
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yRangeMax = DataSeries.maxValue(dataSeries);
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yRangeMin = 0;
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}
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final int height = settings.getHeight();
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switch (settings.getYAxisScale()) {
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case LINEAR:
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result = computeLinearYTicks(height, yRangeMin, yRangeMax);
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break;
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case LOG10:
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result = computeLog10YTicks(height, yRangeMin, yRangeMax);
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break;
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default:
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// use the default
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}
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return result;
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}
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private String computeLog10YTicks(final int height, final long yRangeMin, final long yRangeMax) {
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final StringBuilder result = new StringBuilder();
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appendfln(result, "set ylabel \"%s\"", "Duration");
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final List<String> ticsLabels = Arrays.asList(//
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"\"1ms\" 1", //
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"\"2ms\" 2", //
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"\"5ms\" 5", //
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"\"10ms\" 10", //
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"\"20ms\" 20", //
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"\"50ms\" 50", //
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"\"100ms\" 100", //
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"\"200ms\" 200", //
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"\"500ms\" 500", //
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"\"1s\" 1000", //
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"\"2s\" 2000", //
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"\"5s\" 5000", //
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"\"10s\" 10000", //
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"\"30s\" 30000", //
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"\"1m\" 60000", //
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"\"2m\" 120000", //
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"\"5m\" 300000", //
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"\"10m\" 600000", //
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"\"30m\" 1800000", //
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"\"1h\" 3600000", //
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"\"2h\" 7200000", //
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"\"4h\" 14400000", //
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"\"8h\" 28800000", //
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"\"16h\" 57600000", //
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"\"1d\" 86400000", //
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"\"2d\" 172800000", //
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"\"1 week\" 604800000", //
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"\"2 week\" 1209600000.0", //
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"\"4 week\" 2419200000.0" //
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);
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result.append("set ytics (");
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result.append(String.join(", ", ticsLabels));
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result.append(")\n");
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return result.toString();
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}
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private String computeLinearYTicks(final long height, final long yRangeMin, final long yRangeMax) {
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final StringBuilder result = new StringBuilder();
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appendfln(result, "set ylabel \"%s\"", "Duration");
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final long plotHeight = height - 133; // sum of top/bottom margin, see marker (1)
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final long maxLabels = plotHeight / (TICKS_FONT_SIZE * 5);
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System.out.println("labels: " + maxLabels);
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final long range = yRangeMax - yRangeMin;
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final long msPerLabel = roundToLinearLabelSteps(range / maxLabels);
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final long digits = (long) Math.ceil(Math.log10(msPerLabel));
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System.out.println("range: " + range);
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System.out.println("msPerLabel: " + msPerLabel);
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System.out.println("digits: " + digits);
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final List<String> ticsLabels = new ArrayList<>();
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for (long i = yRangeMin; i < yRangeMax; i += msPerLabel) {
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ticsLabels.add("\"" + msToTic(i, msPerLabel) + "\" " + i);
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}
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ticsLabels.add("\"" + msToTic(yRangeMax, msPerLabel) + "\" " + yRangeMax);
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result.append("set ytics (");
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result.append(String.join(", ", ticsLabels));
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result.append(")\n");
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return result.toString();
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}
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private long roundToLinearLabelSteps(final long msPerLabel) {
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final List<Long> steps = Arrays.asList(2L, 5L, 10L, 20L, 50L, 100L, 200L, 500L, 1000L, 2000L, 5000L, 10_000L,
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20_000L, MINUTES.toMillis(1), MINUTES.toMillis(2), MINUTES.toMillis(5), MINUTES.toMillis(10),
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MINUTES.toMillis(15), MINUTES.toMillis(30), HOURS.toMillis(1), HOURS.toMillis(2), HOURS.toMillis(5),
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HOURS.toMillis(10), HOURS.toMillis(12), DAYS.toMillis(1), DAYS.toMillis(2), DAYS.toMillis(5),
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DAYS.toMillis(7));
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for (final Long step : steps) {
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if (msPerLabel < step) {
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return step;
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}
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}
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return msPerLabel;
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}
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private String msToTic(final long ms, final double msPerLabel) {
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if (ms < 1000) {
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return ms + "ms";
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} else if (ms < MINUTES.toMillis(1)) {
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if (msPerLabel % 1000 == 0) {
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return String.format("%ds", ms / 1_000);
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} else {
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return String.format("%.1fs", ms / 1_000.0);
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}
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} else if (ms < TimeUnit.HOURS.toMillis(1)) {
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final long sec = (ms % MINUTES.toMillis(1)) / SECONDS.toMillis(1);
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final long min = ms / MINUTES.toMillis(1);
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if (msPerLabel % MINUTES.toMillis(1) == 0) {
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return min + "m ";
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} else {
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return min + "m " + sec + "s";
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}
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} else if (ms < DAYS.toMillis(1)) {
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// ms is a multiple of 1 hour, see roundToLinearLabelSteps
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final long hour = (ms % DAYS.toMillis(1)) / HOURS.toMillis(1);
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final long min = (ms % HOURS.toMillis(1)) / MINUTES.toMillis(1);
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final long sec = (ms % MINUTES.toMillis(1)) / SECONDS.toMillis(1);
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if (msPerLabel % MINUTES.toMillis(1) == 0) {
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return hour + "h " + min + "m ";
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} else if (msPerLabel % HOURS.toMillis(1) == 0) {
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return hour + "h ";
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} else {
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return hour + "h " + min + "m " + sec + "s";
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}
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} else {
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// ms is a multiple of 1 day, see roundToLinearLabelSteps
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final long day = ms / DAYS.toMillis(1);
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final long hour = (ms % DAYS.toMillis(1)) / HOURS.toMillis(1);
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return day + "d " + hour + "h ";
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}
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}
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}
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@@ -14,9 +14,6 @@ public class GnuplotSettings {
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// set datafile separator
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private String datafileSeparator = ",";
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// set ylabel
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private String ylabel = "Duration in ms";
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// set output "datausage.png"
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private final Path output;
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@@ -81,14 +78,6 @@ public class GnuplotSettings {
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this.datafileSeparator = datafileSeparator;
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}
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public String getYlabel() {
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return ylabel;
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}
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public void setYlabel(final String ylabel) {
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this.ylabel = ylabel;
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}
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public Path getOutput() {
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return output;
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}
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