Files
weatherreporter/internal/briefing/summary_helpers.go

376 lines
12 KiB
Go

package briefing
import (
"fmt"
"math"
"sort"
"strings"
"gitea.maximumdirect.net/eric/weatherreporter/internal/forecast"
"gitea.maximumdirect.net/eric/weatherreporter/internal/timeutil"
)
type OutdoorWindows struct {
Best *OutdoorWindow
Worst *OutdoorWindow
}
type OutdoorWindow struct {
Daypart string
Period timeutil.Period
Reasons []string
Score float64
}
type TomorrowPlanning struct {
MorningReadiness []string
CommuteSchoolWorkdayConcerns []string
OvernightChangeWatch []string
}
type TodayPlanning struct {
MorningReadiness []string
CommuteSchoolWorkdayConcerns []string
OutdoorPlanning []string
LateDayChangeWatch []string
}
func buildOutdoorWindows(dayparts []forecast.DaypartSummary) OutdoorWindows {
var best *OutdoorWindow
var worst *OutdoorWindow
for _, daypart := range dayparts {
if len(daypart.HourlyPeriods) == 0 {
continue
}
window := scoreOutdoorWindow(daypart)
if best == nil || window.Score < best.Score {
copied := window
best = &copied
}
if worst == nil || window.Score > worst.Score {
copied := window
worst = &copied
}
}
return OutdoorWindows{Best: best, Worst: worst}
}
func buildTodayPlanning(summary *forecast.DailySummary) *TodayPlanning {
planning := &TodayPlanning{}
morning := daypartNamed(summary.Dayparts, "morning")
if morning != nil {
planning.MorningReadiness = append(planning.MorningReadiness, readinessNotes(*morning)...)
}
if len(planning.MorningReadiness) == 0 {
planning.MorningReadiness = append(planning.MorningReadiness, "Morning weather looks routine based on the available hourly forecast.")
}
for _, daypart := range summary.Dayparts {
if daypart.Name == "overnight" || daypart.Name == "evening" {
continue
}
planning.CommuteSchoolWorkdayConcerns = appendUnique(planning.CommuteSchoolWorkdayConcerns, concernNotes(daypart)...)
}
for _, alert := range summary.AlertOverlaps {
if alert.Event != "" {
planning.CommuteSchoolWorkdayConcerns = appendUnique(planning.CommuteSchoolWorkdayConcerns, "Active alert to plan around: "+alert.Event+".")
}
}
if len(planning.CommuteSchoolWorkdayConcerns) == 0 {
planning.CommuteSchoolWorkdayConcerns = append(planning.CommuteSchoolWorkdayConcerns, "No major commute, school, or workday weather concerns stand out in the available forecast.")
}
planning.OutdoorPlanning = append(planning.OutdoorPlanning, outdoorPlanningNotes(summary.Dayparts)...)
if len(planning.OutdoorPlanning) == 0 {
planning.OutdoorPlanning = append(planning.OutdoorPlanning, "No standout outdoor weather constraints are evident in the available forecast.")
}
for _, name := range []string{"afternoon", "evening"} {
daypart := daypartNamed(summary.Dayparts, name)
if daypart != nil {
planning.LateDayChangeWatch = appendUnique(planning.LateDayChangeWatch, lateDayWatchNotes(*daypart)...)
}
}
if len(planning.LateDayChangeWatch) == 0 {
planning.LateDayChangeWatch = append(planning.LateDayChangeWatch, "Watch for forecast timing or intensity adjustments later today.")
}
return planning
}
func buildTomorrowPlanning(summary *forecast.DailySummary) *TomorrowPlanning {
planning := &TomorrowPlanning{}
morning := daypartNamed(summary.Dayparts, "morning")
if morning != nil {
planning.MorningReadiness = append(planning.MorningReadiness, readinessNotes(*morning)...)
}
if len(planning.MorningReadiness) == 0 {
planning.MorningReadiness = append(planning.MorningReadiness, "Morning weather looks routine based on the available hourly forecast.")
}
for _, daypart := range summary.Dayparts {
if daypart.Name == "overnight" || daypart.Name == "evening" {
continue
}
planning.CommuteSchoolWorkdayConcerns = appendUnique(planning.CommuteSchoolWorkdayConcerns, concernNotes(daypart)...)
}
for _, alert := range summary.AlertOverlaps {
if alert.Event != "" {
planning.CommuteSchoolWorkdayConcerns = appendUnique(planning.CommuteSchoolWorkdayConcerns, "Active alert to plan around: "+alert.Event+".")
}
}
if len(planning.CommuteSchoolWorkdayConcerns) == 0 {
planning.CommuteSchoolWorkdayConcerns = append(planning.CommuteSchoolWorkdayConcerns, "No major commute, school, or workday weather concerns stand out in the available forecast.")
}
overnight := daypartNamed(summary.Dayparts, "overnight")
if overnight != nil {
planning.OvernightChangeWatch = append(planning.OvernightChangeWatch, overnightWatchNotes(*overnight)...)
}
if len(planning.OvernightChangeWatch) == 0 {
planning.OvernightChangeWatch = append(planning.OvernightChangeWatch, "Watch for forecast timing or intensity adjustments overnight.")
}
return planning
}
func outdoorPlanningNotes(dayparts []forecast.DaypartSummary) []string {
windows := buildOutdoorWindows(dayparts)
var notes []string
if windows.Best != nil {
notes = append(notes, fmt.Sprintf("Best outdoor window: %s (%s).", titleWord(windows.Best.Daypart), strings.Join(windows.Best.Reasons, ", ")))
}
if windows.Worst != nil && (windows.Best == nil || windows.Worst.Daypart != windows.Best.Daypart) {
notes = append(notes, fmt.Sprintf("Toughest outdoor window: %s (%s).", titleWord(windows.Worst.Daypart), strings.Join(windows.Worst.Reasons, ", ")))
}
return appendUnique(nil, notes...)
}
func readinessNotes(daypart forecast.DaypartSummary) []string {
notes := []string{}
if daypart.MaxPrecipitationProbability != nil && daypart.MaxPrecipitationProbability.Value >= 50 {
notes = append(notes, fmt.Sprintf("Morning precipitation chance peaks near %.0f%%.", daypart.MaxPrecipitationProbability.Value))
}
if daypart.PeakWindGust != nil && daypart.PeakWindGust.Value >= 30 {
notes = append(notes, fmt.Sprintf("Morning gusts may reach %.0f mph.", daypart.PeakWindGust.Value))
}
if daypart.Indicators.Snow || daypart.Indicators.Ice {
notes = append(notes, "Morning wintry weather could affect surfaces and travel.")
}
if daypart.Indicators.Fog {
notes = append(notes, "Morning fog could reduce visibility.")
}
if daypart.Temperature.Min != nil && *daypart.Temperature.Min <= 32 {
notes = append(notes, "Morning temperatures may be at or below freezing.")
}
return appendUnique(nil, notes...)
}
func lateDayWatchNotes(daypart forecast.DaypartSummary) []string {
notes := []string{}
prefix := titleWord(daypart.Name)
if prefix == "" {
prefix = "Late-day"
}
if daypart.MaxPrecipitationProbability != nil && daypart.MaxPrecipitationProbability.Value >= 30 {
notes = append(notes, fmt.Sprintf("%s precipitation timing may shift; current peak is near %.0f%%.", prefix, daypart.MaxPrecipitationProbability.Value))
}
if daypart.PeakWindGust != nil && daypart.PeakWindGust.Value >= 30 {
notes = append(notes, fmt.Sprintf("%s gusts may reach %.0f mph.", prefix, daypart.PeakWindGust.Value))
}
if daypart.Indicators.Snow || daypart.Indicators.Ice {
notes = append(notes, prefix+" wintry weather could affect late-day travel.")
}
if len(daypart.AlertOverlaps) > 0 {
notes = append(notes, prefix+" alert timing could affect late-day plans.")
}
return appendUnique(nil, notes...)
}
func concernNotes(daypart forecast.DaypartSummary) []string {
notes := []string{}
prefix := titleWord(daypart.Name)
if prefix == "" {
prefix = "Daytime"
}
if daypart.MaxPrecipitationProbability != nil && daypart.MaxPrecipitationProbability.Value >= 40 {
notes = append(notes, fmt.Sprintf("%s precipitation chance reaches %.0f%%.", prefix, daypart.MaxPrecipitationProbability.Value))
}
if daypart.PeakWindGust != nil && daypart.PeakWindGust.Value >= 30 {
notes = append(notes, fmt.Sprintf("%s gusts may reach %.0f mph.", prefix, daypart.PeakWindGust.Value))
}
if daypart.Indicators.Snow || daypart.Indicators.Ice {
notes = append(notes, prefix+" wintry weather may affect travel.")
}
if daypart.Indicators.Heat {
notes = append(notes, prefix+" heat may require extra hydration and breaks.")
}
if daypart.Indicators.Cold {
notes = append(notes, prefix+" cold may require extra layers.")
}
if len(daypart.AlertOverlaps) > 0 {
notes = append(notes, prefix+" alert overlap needs attention.")
}
return appendUnique(nil, notes...)
}
func overnightWatchNotes(daypart forecast.DaypartSummary) []string {
notes := []string{}
if daypart.MaxPrecipitationProbability != nil && daypart.MaxPrecipitationProbability.Value >= 30 {
notes = append(notes, fmt.Sprintf("Overnight precipitation timing may shift; current peak is near %.0f%%.", daypart.MaxPrecipitationProbability.Value))
}
if daypart.PeakWindGust != nil && daypart.PeakWindGust.Value >= 30 {
notes = append(notes, fmt.Sprintf("Overnight gusts may reach %.0f mph before morning plans begin.", daypart.PeakWindGust.Value))
}
if daypart.Indicators.Snow || daypart.Indicators.Ice {
notes = append(notes, "Overnight wintry weather could leave morning travel impacts.")
}
if len(daypart.AlertOverlaps) > 0 {
notes = append(notes, "Overnight alert timing could affect the morning setup.")
}
return appendUnique(nil, notes...)
}
func daypartNamed(dayparts []forecast.DaypartSummary, name string) *forecast.DaypartSummary {
for i := range dayparts {
if strings.EqualFold(dayparts[i].Name, name) {
return &dayparts[i]
}
}
return nil
}
func scoreOutdoorWindow(daypart forecast.DaypartSummary) OutdoorWindow {
score := 0.0
reasons := []string{}
if daypart.MaxPrecipitationProbability != nil {
score += daypart.MaxPrecipitationProbability.Value
if daypart.MaxPrecipitationProbability.Value >= 50 {
reasons = append(reasons, "high precipitation chance")
}
}
if daypart.PeakWindGust != nil {
score += daypart.PeakWindGust.Value * 1.5
if daypart.PeakWindGust.Value >= 30 {
reasons = append(reasons, "gusty wind")
}
}
if len(daypart.AlertOverlaps) > 0 {
score += float64(len(daypart.AlertOverlaps)) * 100
reasons = append(reasons, "alert overlap")
}
if daypart.Indicators.Heat || daypart.Indicators.Cold {
score += 25
if daypart.Indicators.Heat {
reasons = append(reasons, "heat risk")
}
if daypart.Indicators.Cold {
reasons = append(reasons, "cold risk")
}
}
if len(reasons) == 0 {
reasons = append(reasons, "quiet weather")
}
return OutdoorWindow{
Daypart: daypart.Name,
Period: daypart.Period,
Reasons: dedupe(reasons),
Score: math.Round(score*10) / 10,
}
}
func hazardsForIndicators(indicators forecast.Indicators) []string {
var hazards []string
if indicators.Snow {
hazards = append(hazards, "snow")
}
if indicators.Ice {
hazards = append(hazards, "ice")
}
if indicators.Fog {
hazards = append(hazards, "fog")
}
if indicators.Heat {
hazards = append(hazards, "heat")
}
if indicators.Cold {
hazards = append(hazards, "cold")
}
if indicators.Wind {
hazards = append(hazards, "wind")
}
return hazards
}
func addRange(target *forecast.Range, value forecast.Range) {
if value.Min != nil {
if target.Min == nil || *value.Min < *target.Min {
copied := *value.Min
target.Min = &copied
}
}
if value.Max != nil {
if target.Max == nil || *value.Max > *target.Max {
copied := *value.Max
target.Max = &copied
}
}
}
func maxTimedValue(target **forecast.TimedValue, value *forecast.TimedValue) {
if value == nil {
return
}
if *target == nil || value.Value > (*target).Value {
copied := *value
*target = &copied
}
}
func sortedSet(values map[string]struct{}) []string {
out := make([]string, 0, len(values))
for value := range values {
out = append(out, value)
}
sort.Strings(out)
return out
}
func dedupe(values []string) []string {
seen := map[string]struct{}{}
out := []string{}
for _, value := range values {
if _, ok := seen[value]; ok {
continue
}
seen[value] = struct{}{}
out = append(out, value)
}
return out
}
func appendUnique(values []string, candidates ...string) []string {
seen := map[string]struct{}{}
for _, value := range values {
seen[value] = struct{}{}
}
for _, candidate := range candidates {
if candidate == "" {
continue
}
if _, ok := seen[candidate]; ok {
continue
}
seen[candidate] = struct{}{}
values = append(values, candidate)
}
return values
}
func titleWord(value string) string {
if value == "" {
return ""
}
return strings.ToUpper(value[:1]) + value[1:]
}