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Use actual min and max temperatures in statistics.
The statistics page only used each dive's "watertemp" attribute, regardless of actual higher/lower temperatures in the samples. By finding the actual max/min temperatures, the statistics page utilize more "real" data, and look better even on single dives. Signed-off-by: Henrik Brautaset Aronsen <subsurface@henrik.synth.no> Signed-off-by: Dirk Hohndel <dirk@hohndel.org>
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parent
b8efe709a8
commit
e3088930ab
3 changed files with 47 additions and 8 deletions
13
dive.c
13
dive.c
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@ -248,6 +248,17 @@ static void fixup_pressure(struct dive *dive, struct sample *sample)
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cyl->sample_end.mbar = pressure;
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}
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static void update_min_max_temperatures(struct dive *dive, struct sample *sample)
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{
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if (sample->temperature.mkelvin) {
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if (!dive->maxtemp.mkelvin || sample->temperature.mkelvin > dive->maxtemp.mkelvin)
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dive->maxtemp = sample->temperature;
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if (!dive->mintemp.mkelvin || sample->temperature.mkelvin < dive->mintemp.mkelvin)
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dive->mintemp = sample->temperature;
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}
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}
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/*
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* If the cylinder tank pressures are within half a bar
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* (about 8 PSI) of the sample pressures, we consider it
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@ -479,6 +490,8 @@ struct dive *fixup_dive(struct dive *dive)
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if (!mintemp || temp < mintemp)
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mintemp = temp;
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}
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update_min_max_temperatures(dive, sample);
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depthtime += (time - lasttime) * (lastdepth + depth) / 2;
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lastdepth = depth;
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lasttime = time;
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1
dive.h
1
dive.h
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@ -316,6 +316,7 @@ struct dive {
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weightsystem_t weightsystem[MAX_WEIGHTSYSTEMS];
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char *suit;
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int sac, otu, cns, maxcns;
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temperature_t mintemp, maxtemp;
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/* Eventually we'll do multiple dive computers */
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struct divecomputer dc;
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41
statistics.c
41
statistics.c
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@ -107,6 +107,37 @@ enum {
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static char * get_time_string(int seconds, int maxdays);
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static void process_temperatures(struct dive *dp, stats_t *stats, const char *unit)
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{
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int min_temp, mean_temp, max_temp = 0;
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if (dp->maxtemp.mkelvin)
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max_temp = dp->maxtemp.mkelvin;
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else
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max_temp = dp->dc.watertemp.mkelvin;
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if (max_temp && (!stats->max_temp || max_temp > stats->max_temp))
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stats->max_temp = max_temp;
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if (dp->mintemp.mkelvin)
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min_temp = dp->mintemp.mkelvin;
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else
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min_temp = dp->dc.watertemp.mkelvin;
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if (min_temp && (!stats->min_temp || min_temp < stats->min_temp))
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stats->min_temp = min_temp;
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if (min_temp || max_temp) {
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mean_temp = min_temp;
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if (mean_temp)
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mean_temp = (mean_temp + max_temp) / 2;
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else
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mean_temp = max_temp;
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stats->combined_temp += get_temp_units(mean_temp, &unit);
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stats->combined_count++;
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}
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}
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static void process_dive(struct dive *dp, stats_t *stats)
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{
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int old_tt, sac_time = 0;
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@ -122,14 +153,8 @@ static void process_dive(struct dive *dp, stats_t *stats)
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stats->max_depth.mm = dp->dc.maxdepth.mm;
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if (stats->min_depth.mm == 0 || dp->dc.maxdepth.mm < stats->min_depth.mm)
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stats->min_depth.mm = dp->dc.maxdepth.mm;
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if (dp->dc.watertemp.mkelvin) {
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if (stats->min_temp == 0 || dp->dc.watertemp.mkelvin < stats->min_temp)
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stats->min_temp = dp->dc.watertemp.mkelvin;
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if (dp->dc.watertemp.mkelvin > stats->max_temp)
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stats->max_temp = dp->dc.watertemp.mkelvin;
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stats->combined_temp += get_temp_units(dp->dc.watertemp.mkelvin, &unit);
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stats->combined_count++;
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}
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process_temperatures(dp, stats, unit);
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/* Maybe we should drop zero-duration dives */
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if (!dp->dc.duration.seconds)
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