c58027c034
Replaces the Phase 10 report stub with a scrollable orchestrator that renders every FBS array as a dedicated section (galaxy summary, votes, player status, my/foreign sciences, my/foreign ship classes, battles, bombings, approaching groups, my/foreign/uninhabited/unknown planets, ships in production, cargo routes, my fleets, my/foreign/unidentified ship groups). A sticky table of contents (a <select> on mobile), "back to map" affordance, IntersectionObserver-driven active-section highlight, and SvelteKit Snapshot-based scroll save/restore round out the view. GameReport gains six new fields (players, otherScience, otherShipClass, battleIds, bombings, shipProductions); decodeReport, the synthetic- report loader, the e2e fixture builder, and EMPTY_SHIP_GROUPS extend in lockstep. ~90 new i18n keys land in en + ru together. The legacy-report parser is extended to populate the new sections from the dg/gplus text formats (Your Sciences, <Race> Sciences, <Race> Ship Types, Bombings, Ships In Production). Ships-in-production prod_used is derived through a new pkg/calc.ShipBuildCost helper; the engine's controller.ProduceShip refactors to call the same helper without any behaviour change (engine tests stay unchanged and green). Battles remain in the parser's Skipped list — the legacy text carries no stable per-battle UUID. Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
970 lines
26 KiB
Go
970 lines
26 KiB
Go
// Package legacyreport parses legacy text-format Galaxy turn reports
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// (the "dg" / "gplus" engines) into [report.Report] values.
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//
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// Scope is intentionally narrow: only the fields the UI client decodes
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// from server reports today (planets, players, own ship classes,
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// header data, plus — added in Phase 19 — own ship groups, own fleets
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// and incoming groups). Everything else in the legacy file is silently
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// skipped. The synthetic-report parity rule in ui/PLAN.md is the
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// source of truth for when to extend this parser; the package's
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// README.md tracks every legacy section that could be wired up later
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// when the corresponding UI decoder lands.
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package legacyreport
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import (
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"bufio"
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"errors"
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"fmt"
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"io"
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"strconv"
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"strings"
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"github.com/google/uuid"
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"galaxy/calc"
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"galaxy/model/report"
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)
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// Parse reads a legacy text report and returns a [report.Report]
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// carrying the in-scope subset of fields. The Width and Height of the
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// returned report are both set to the legacy "Size" value (galaxies
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// are square in the legacy engines).
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func Parse(r io.Reader) (report.Report, error) {
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p := newParser()
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sc := bufio.NewScanner(r)
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sc.Buffer(make([]byte, 1024*1024), 4*1024*1024)
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for sc.Scan() {
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if err := p.handle(sc.Text()); err != nil {
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return report.Report{}, err
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}
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}
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if err := sc.Err(); err != nil {
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return report.Report{}, fmt.Errorf("legacyreport: scan: %w", err)
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}
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return p.finish()
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}
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type section int
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const (
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sectionNone section = iota
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sectionStatusOfPlayers
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sectionYourVote
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sectionYourPlanets
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sectionOtherPlanets
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sectionUninhabitedPlanets
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sectionUnidentifiedPlanets
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sectionYourShipTypes
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sectionYourGroups
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sectionYourFleets
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sectionIncomingGroups
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sectionYourSciences
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sectionOtherSciences
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sectionOtherShipTypes
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sectionBombings
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sectionShipsInProduction
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)
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type parser struct {
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rep report.Report
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sec section
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otherOwner string
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skipHeader bool
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sawHeader bool
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sawSize bool
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// Group/fleet/incoming rows are buffered during the scan because
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// they carry destination/origin planet names that may resolve
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// against the planet tables only after the whole file has been
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// read — "Incoming Groups" can appear before "Your Planets" in
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// some engine variants. Ships-in-production rows are buffered
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// because their prod_used derivation needs the producing planet's
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// material and resources (read from "Your Planets") to call
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// [calc.ShipBuildCost], and the section order is not guaranteed.
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pendingGroups []pendingGroup
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pendingFleets []pendingFleet
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pendingIncomings []pendingIncoming
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pendingShipProducts []pendingShipProduction
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}
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type pendingGroup struct {
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g uint
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number uint
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class string
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drive float64
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weapons float64
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shields float64
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cargoTech float64
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cargoType string
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load float64
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destinationName string
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originName string // empty when "-"
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rangeStr string // empty when "-"
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mass float64
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fleet string // empty when "-"
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state string
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}
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type pendingFleet struct {
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name string
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groups uint
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destinationName string
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originName string // empty when "-"
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rangeStr string // empty when "-"
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state string
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}
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type pendingIncoming struct {
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originName string
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destinationName string
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distance float64
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speed float64
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mass float64
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}
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type pendingShipProduction struct {
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planetNumber uint
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class string
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cost float64
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percent float64
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free float64
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}
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func newParser() *parser {
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return &parser{sec: sectionNone}
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}
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func (p *parser) handle(line string) error {
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trimmed := strings.TrimSpace(line)
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if !p.sawHeader && trimmed != "" {
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if race, turn, ok := parseHeader(trimmed); ok {
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p.rep.Race = race
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p.rep.Turn = turn
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p.sawHeader = true
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return nil
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}
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}
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if !p.sawSize && strings.HasPrefix(trimmed, "Size:") {
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if w, planets, ok := parseSize(trimmed); ok {
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p.rep.Width = w
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p.rep.Height = w
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p.rep.PlanetCount = planets
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p.sawSize = true
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}
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return nil
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}
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if newSec, owner, isHeader := classifySection(trimmed); isHeader {
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p.sec = newSec
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p.otherOwner = owner
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p.skipHeader = newSec != sectionNone
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return nil
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}
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if trimmed == "" {
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return nil
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}
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if p.sec == sectionNone {
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return nil
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}
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if p.skipHeader {
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p.skipHeader = false
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return nil
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}
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fields := strings.Fields(trimmed)
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switch p.sec {
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case sectionStatusOfPlayers:
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p.parsePlayer(fields)
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case sectionYourVote:
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p.parseYourVote(fields)
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case sectionYourPlanets:
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p.parseLocalPlanet(fields)
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case sectionOtherPlanets:
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p.parseOtherPlanet(fields)
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case sectionUninhabitedPlanets:
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p.parseUninhabitedPlanet(fields)
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case sectionUnidentifiedPlanets:
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p.parseUnidentifiedPlanet(fields)
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case sectionYourShipTypes:
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p.parseShipClass(fields)
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case sectionYourGroups:
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p.parseYourGroup(fields)
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case sectionYourFleets:
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p.parseYourFleet(fields)
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case sectionIncomingGroups:
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p.parseIncomingGroup(fields)
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case sectionYourSciences:
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p.parseYourScience(fields)
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case sectionOtherSciences:
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p.parseOtherScience(fields)
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case sectionOtherShipTypes:
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p.parseOtherShipClass(fields)
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case sectionBombings:
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p.parseBombing(fields)
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case sectionShipsInProduction:
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p.parseShipProductionRow(fields)
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}
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return nil
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}
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func (p *parser) finish() (report.Report, error) {
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if !p.sawHeader {
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return report.Report{}, errors.New("legacyreport: missing report header line")
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}
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p.resolvePending()
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return p.rep, nil
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}
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// parseHeader extracts (race, turn) from
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// "<Race> Report for Galaxy ... Turn N ...".
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func parseHeader(line string) (string, uint, bool) {
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race, rest, ok := strings.Cut(line, " Report for Galaxy ")
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if !ok {
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return "", 0, false
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}
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_, afterTurn, ok := strings.Cut(rest, " Turn ")
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if !ok {
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return "", 0, false
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}
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after := strings.Fields(afterTurn)
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if len(after) == 0 {
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return "", 0, false
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}
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n, err := strconv.ParseUint(after[0], 10, 32)
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if err != nil {
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return "", 0, false
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}
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return race, uint(n), true
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}
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// parseSize extracts (size, planets) from
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// "Size: W Planets: P Players: N". Players is intentionally
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// dropped: report.Report has no field for it.
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func parseSize(line string) (uint32, uint32, bool) {
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fields := strings.Fields(line)
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var size, planets uint32
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var ok bool
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for i := 0; i+1 < len(fields); i++ {
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key := strings.TrimRight(fields[i], ":")
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switch key {
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case "Size":
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if n, err := strconv.ParseUint(fields[i+1], 10, 32); err == nil {
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size = uint32(n)
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ok = true
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}
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case "Planets":
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if n, err := strconv.ParseUint(fields[i+1], 10, 32); err == nil {
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planets = uint32(n)
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}
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}
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}
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return size, planets, ok
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}
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// classifySection returns the section the trimmed line opens. When
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// isHeader is true the caller transitions state — sectionNone there
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// means "switch into skip mode" (an uninteresting section like
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// Bombings, Battle at ..., or a foreign Ship Types block).
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func classifySection(line string) (sec section, owner string, isHeader bool) {
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switch line {
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case "":
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return sectionNone, "", false
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case "Your Planets":
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return sectionYourPlanets, "", true
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case "Your Ship Types":
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return sectionYourShipTypes, "", true
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case "Your Groups":
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return sectionYourGroups, "", true
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case "Your Fleets":
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return sectionYourFleets, "", true
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case "Incoming Groups":
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return sectionIncomingGroups, "", true
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case "Uninhabited Planets":
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return sectionUninhabitedPlanets, "", true
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case "Unidentified Planets":
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return sectionUnidentifiedPlanets, "", true
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case "Your vote:":
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return sectionYourVote, "", true
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case "Your Sciences":
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return sectionYourSciences, "", true
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case "Bombings":
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return sectionBombings, "", true
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case "Ships In Production":
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return sectionShipsInProduction, "", true
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case "Approaching Groups",
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"Broadcast Message",
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"Battle Protocol":
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return sectionNone, "", true
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}
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if strings.HasPrefix(line, "Status of Players") {
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return sectionStatusOfPlayers, "", true
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}
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if strings.HasPrefix(line, "Battle at ") {
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return sectionNone, "", true
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}
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if strings.HasPrefix(line, "=== ATTENTION") {
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return sectionNone, "", true
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}
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if owner, ok := singleTokenPrefix(line, " Planets"); ok {
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return sectionOtherPlanets, owner, true
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}
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if owner, ok := singleTokenPrefix(line, " Ship Types"); ok {
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return sectionOtherShipTypes, owner, true
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}
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if owner, ok := singleTokenPrefix(line, " Sciences"); ok {
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return sectionOtherSciences, owner, true
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}
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if _, ok := singleTokenPrefix(line, " Groups"); ok {
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return sectionNone, "", true
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}
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return sectionNone, "", false
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}
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func singleTokenPrefix(line, suffix string) (string, bool) {
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if !strings.HasSuffix(line, suffix) {
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return "", false
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}
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prefix := strings.TrimSuffix(line, suffix)
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if prefix == "" || strings.ContainsAny(prefix, " \t") {
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return "", false
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}
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return prefix, true
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}
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// parsePlayer expects 10 columns:
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//
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// N D W S C P I # R V
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func (p *parser) parsePlayer(fields []string) {
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if len(fields) < 10 {
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return
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}
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name := fields[0]
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drive, err := parseFloat(fields[1])
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if err != nil {
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return
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}
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weapons, _ := parseFloat(fields[2])
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shields, _ := parseFloat(fields[3])
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cargo, _ := parseFloat(fields[4])
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population, _ := parseFloat(fields[5])
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industry, _ := parseFloat(fields[6])
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plCount, err := strconv.ParseUint(fields[7], 10, 16)
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if err != nil {
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return
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}
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relation := fields[8]
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votes, _ := parseFloat(fields[9])
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extinct := strings.HasSuffix(name, "_RIP")
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if extinct {
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name = strings.TrimSuffix(name, "_RIP")
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}
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p.rep.Player = append(p.rep.Player, report.Player{
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Name: name,
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Drive: report.F(drive),
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Weapons: report.F(weapons),
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Shields: report.F(shields),
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Cargo: report.F(cargo),
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Population: report.F(population),
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Industry: report.F(industry),
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Planets: uint16(plCount),
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Relation: relation,
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Votes: report.F(votes),
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Extinct: extinct,
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})
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}
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func (p *parser) parseYourVote(fields []string) {
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if len(fields) < 2 {
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return
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}
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p.rep.VoteFor = fields[0]
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if v, err := parseFloat(fields[1]); err == nil {
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p.rep.Votes = report.F(v)
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}
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p.sec = sectionNone
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}
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// parseLocalPlanet expects 13 columns:
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//
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// # X Y N S P I R Production $ M C L
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func (p *parser) parseLocalPlanet(fields []string) {
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lp, ok := decodeLocalPlanetRow(fields)
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if !ok {
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return
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}
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p.rep.LocalPlanet = append(p.rep.LocalPlanet, lp)
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}
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func (p *parser) parseOtherPlanet(fields []string) {
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lp, ok := decodeLocalPlanetRow(fields)
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if !ok {
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return
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}
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p.rep.OtherPlanet = append(p.rep.OtherPlanet, report.OtherPlanet{
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Owner: p.otherOwner,
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LocalPlanet: lp,
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})
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}
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func decodeLocalPlanetRow(fields []string) (report.LocalPlanet, bool) {
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var lp report.LocalPlanet
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if len(fields) < 13 {
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return lp, false
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}
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number, err := strconv.ParseUint(fields[0], 10, 32)
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if err != nil {
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return lp, false
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}
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x, _ := parseFloat(fields[1])
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y, _ := parseFloat(fields[2])
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size, _ := parseFloat(fields[4])
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population, _ := parseFloat(fields[5])
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industry, _ := parseFloat(fields[6])
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resources, _ := parseFloat(fields[7])
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capital, _ := parseFloat(fields[9])
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material, _ := parseFloat(fields[10])
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colonists, _ := parseFloat(fields[11])
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free, _ := parseFloat(fields[12])
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lp.Number = uint(number)
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lp.X = report.F(x)
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lp.Y = report.F(y)
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lp.Name = fields[3]
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lp.Size = report.F(size)
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lp.Resources = report.F(resources)
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lp.Capital = report.F(capital)
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lp.Material = report.F(material)
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lp.Industry = report.F(industry)
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lp.Population = report.F(population)
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lp.Colonists = report.F(colonists)
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lp.Production = fields[8]
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lp.FreeIndustry = report.F(free)
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return lp, true
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}
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// parseUninhabitedPlanet expects 8 columns:
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//
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// # X Y N S R $ M
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func (p *parser) parseUninhabitedPlanet(fields []string) {
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if len(fields) < 8 {
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return
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}
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number, err := strconv.ParseUint(fields[0], 10, 32)
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if err != nil {
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return
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}
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x, _ := parseFloat(fields[1])
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y, _ := parseFloat(fields[2])
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size, _ := parseFloat(fields[4])
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resources, _ := parseFloat(fields[5])
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capital, _ := parseFloat(fields[6])
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material, _ := parseFloat(fields[7])
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var u report.UninhabitedPlanet
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u.Number = uint(number)
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u.X = report.F(x)
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u.Y = report.F(y)
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u.Name = fields[3]
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u.Size = report.F(size)
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u.Resources = report.F(resources)
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u.Capital = report.F(capital)
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u.Material = report.F(material)
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p.rep.UninhabitedPlanet = append(p.rep.UninhabitedPlanet, u)
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}
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// parseUnidentifiedPlanet expects 3 columns:
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//
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// # X Y
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func (p *parser) parseUnidentifiedPlanet(fields []string) {
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if len(fields) < 3 {
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return
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}
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number, err := strconv.ParseUint(fields[0], 10, 32)
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if err != nil {
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return
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}
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x, _ := parseFloat(fields[1])
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y, _ := parseFloat(fields[2])
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p.rep.UnidentifiedPlanet = append(p.rep.UnidentifiedPlanet, report.UnidentifiedPlanet{
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Number: uint(number),
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X: report.F(x),
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Y: report.F(y),
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})
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}
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// parseShipClass expects 7 columns:
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//
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// N D A W S C M
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func (p *parser) parseShipClass(fields []string) {
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sc, ok := decodeShipClassRow(fields)
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if !ok {
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return
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}
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p.rep.LocalShipClass = append(p.rep.LocalShipClass, sc)
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}
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// parseOtherShipClass parses one row of a "<Race> Ship Types" block.
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// Same 7-column layout as [parser.parseShipClass]; the owning race is
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// captured into [parser.otherOwner] when the section header is
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// classified by [classifySection].
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func (p *parser) parseOtherShipClass(fields []string) {
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sc, ok := decodeShipClassRow(fields)
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if !ok {
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return
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}
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p.rep.OtherShipClass = append(p.rep.OtherShipClass, report.OthersShipClass{
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Race: p.otherOwner,
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ShipClass: sc,
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})
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}
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func decodeShipClassRow(fields []string) (report.ShipClass, bool) {
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var sc report.ShipClass
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if len(fields) < 7 {
|
|
return sc, false
|
|
}
|
|
drive, err := parseFloat(fields[1])
|
|
if err != nil {
|
|
return sc, false
|
|
}
|
|
armament, err := strconv.ParseUint(fields[2], 10, 32)
|
|
if err != nil {
|
|
return sc, false
|
|
}
|
|
weapons, _ := parseFloat(fields[3])
|
|
shields, _ := parseFloat(fields[4])
|
|
cargo, _ := parseFloat(fields[5])
|
|
mass, _ := parseFloat(fields[6])
|
|
sc.Name = fields[0]
|
|
sc.Drive = report.F(drive)
|
|
sc.Armament = uint(armament)
|
|
sc.Weapons = report.F(weapons)
|
|
sc.Shields = report.F(shields)
|
|
sc.Cargo = report.F(cargo)
|
|
sc.Mass = report.F(mass)
|
|
return sc, true
|
|
}
|
|
|
|
// parseYourScience parses one row of the "Your Sciences" block.
|
|
// Columns:
|
|
//
|
|
// N D W S C
|
|
//
|
|
// where D/W/S/C are the four tech proportions as fractions summing
|
|
// to 1.0 (`pkg/calc/validator.go.ValidateScienceValues`).
|
|
func (p *parser) parseYourScience(fields []string) {
|
|
sc, ok := decodeScienceRow(fields)
|
|
if !ok {
|
|
return
|
|
}
|
|
p.rep.LocalScience = append(p.rep.LocalScience, sc)
|
|
}
|
|
|
|
// parseOtherScience parses one row of a "<Race> Sciences" block.
|
|
// Same 5-column layout as [parser.parseYourScience]; the owning race
|
|
// is captured into [parser.otherOwner] by [classifySection].
|
|
func (p *parser) parseOtherScience(fields []string) {
|
|
sc, ok := decodeScienceRow(fields)
|
|
if !ok {
|
|
return
|
|
}
|
|
p.rep.OtherScience = append(p.rep.OtherScience, report.OtherScience{
|
|
Race: p.otherOwner,
|
|
Science: sc,
|
|
})
|
|
}
|
|
|
|
func decodeScienceRow(fields []string) (report.Science, bool) {
|
|
var sc report.Science
|
|
if len(fields) < 5 {
|
|
return sc, false
|
|
}
|
|
drive, err := parseFloat(fields[1])
|
|
if err != nil {
|
|
return sc, false
|
|
}
|
|
weapons, _ := parseFloat(fields[2])
|
|
shields, _ := parseFloat(fields[3])
|
|
cargo, _ := parseFloat(fields[4])
|
|
sc.Name = fields[0]
|
|
sc.Drive = report.F(drive)
|
|
sc.Weapons = report.F(weapons)
|
|
sc.Shields = report.F(shields)
|
|
sc.Cargo = report.F(cargo)
|
|
return sc, true
|
|
}
|
|
|
|
// parseBombing parses one row of the "Bombings" block. Columns
|
|
// (12 tokens, last is the wiped/damaged status word):
|
|
//
|
|
// W O # N P I P $ M C A status
|
|
//
|
|
// where the first P is the post-bombing population and the second
|
|
// P is the production string left on the planet. Status is parsed
|
|
// positionally — the header has a duplicate P, so a header-name
|
|
// lookup is not safe.
|
|
func (p *parser) parseBombing(fields []string) {
|
|
if len(fields) < 12 {
|
|
return
|
|
}
|
|
number, err := strconv.ParseUint(fields[2], 10, 32)
|
|
if err != nil {
|
|
return
|
|
}
|
|
population, _ := parseFloat(fields[4])
|
|
industry, _ := parseFloat(fields[5])
|
|
capital, _ := parseFloat(fields[7])
|
|
material, _ := parseFloat(fields[8])
|
|
colonists, _ := parseFloat(fields[9])
|
|
attack, _ := parseFloat(fields[10])
|
|
wiped := fields[11] == "Wiped"
|
|
p.rep.Bombing = append(p.rep.Bombing, &report.Bombing{
|
|
Attacker: fields[0],
|
|
Owner: fields[1],
|
|
Number: uint(number),
|
|
Planet: fields[3],
|
|
Population: report.F(population),
|
|
Industry: report.F(industry),
|
|
Production: fields[6],
|
|
Capital: report.F(capital),
|
|
Material: report.F(material),
|
|
Colonists: report.F(colonists),
|
|
AttackPower: report.F(attack),
|
|
Wiped: wiped,
|
|
})
|
|
}
|
|
|
|
// parseShipProductionRow buffers a "Ships In Production" row for
|
|
// post-processing in [parser.finish]. Columns:
|
|
//
|
|
// # N S C P L
|
|
//
|
|
// where # is the planet number, N is the planet name (decorative —
|
|
// resolution uses #), S is the building ship class, C is the cost
|
|
// (== shipMass * 10), P is the build progress as a fraction in
|
|
// [0, 1], and L is the producing planet's free industry. The wire
|
|
// shape's `prod_used` field is not carried by the legacy text; it is
|
|
// derived during [parser.resolvePending] from the planet's material
|
|
// and resources via [calc.ShipBuildCost].
|
|
func (p *parser) parseShipProductionRow(fields []string) {
|
|
if len(fields) < 6 {
|
|
return
|
|
}
|
|
number, err := strconv.ParseUint(fields[0], 10, 32)
|
|
if err != nil {
|
|
return
|
|
}
|
|
cost, _ := parseFloat(fields[3])
|
|
percent, _ := parseFloat(fields[4])
|
|
free, _ := parseFloat(fields[5])
|
|
p.pendingShipProducts = append(p.pendingShipProducts, pendingShipProduction{
|
|
planetNumber: uint(number),
|
|
class: fields[2],
|
|
cost: cost,
|
|
percent: percent,
|
|
free: free,
|
|
})
|
|
}
|
|
|
|
// parseYourGroup buffers a "Your Groups" row for post-processing in
|
|
// [parser.finish]. Columns (16 fields, last is state):
|
|
//
|
|
// G # T D W S C T Q D F R P M L state
|
|
//
|
|
// where the second D is the destination planet name, F is the origin
|
|
// planet name (or "-" for on-planet groups), R is the remaining
|
|
// distance, and L is the fleet membership (or "-").
|
|
func (p *parser) parseYourGroup(fields []string) {
|
|
if len(fields) < 16 {
|
|
return
|
|
}
|
|
g, err := strconv.ParseUint(fields[0], 10, 32)
|
|
if err != nil {
|
|
return
|
|
}
|
|
number, err := strconv.ParseUint(fields[1], 10, 32)
|
|
if err != nil {
|
|
return
|
|
}
|
|
drive, _ := parseFloat(fields[3])
|
|
weapons, _ := parseFloat(fields[4])
|
|
shields, _ := parseFloat(fields[5])
|
|
cargoTech, _ := parseFloat(fields[6])
|
|
load, _ := parseFloat(fields[8])
|
|
mass, _ := parseFloat(fields[13])
|
|
|
|
p.pendingGroups = append(p.pendingGroups, pendingGroup{
|
|
g: uint(g),
|
|
number: uint(number),
|
|
class: fields[2],
|
|
drive: drive,
|
|
weapons: weapons,
|
|
shields: shields,
|
|
cargoTech: cargoTech,
|
|
cargoType: fields[7],
|
|
load: load,
|
|
destinationName: fields[9],
|
|
originName: dashOrEmpty(fields[10]),
|
|
rangeStr: dashOrEmpty(fields[11]),
|
|
mass: mass,
|
|
fleet: dashOrEmpty(fields[14]),
|
|
state: fields[15],
|
|
})
|
|
}
|
|
|
|
// parseYourFleet buffers a "Your Fleets" row. Columns vary by engine
|
|
// — Killer/Tancordia ship 8 fields including a trailing state token,
|
|
// gplus emits 7 (no state). Layout:
|
|
//
|
|
// # N G D F R P [state]
|
|
//
|
|
// where D is the destination planet name, F is the origin planet
|
|
// name (or "-"), and R is the remaining distance.
|
|
func (p *parser) parseYourFleet(fields []string) {
|
|
if len(fields) < 7 {
|
|
return
|
|
}
|
|
groups, err := strconv.ParseUint(fields[2], 10, 32)
|
|
if err != nil {
|
|
return
|
|
}
|
|
state := ""
|
|
if len(fields) >= 8 {
|
|
state = fields[7]
|
|
}
|
|
p.pendingFleets = append(p.pendingFleets, pendingFleet{
|
|
name: fields[1],
|
|
groups: uint(groups),
|
|
destinationName: fields[3],
|
|
originName: dashOrEmpty(fields[4]),
|
|
rangeStr: dashOrEmpty(fields[5]),
|
|
state: state,
|
|
})
|
|
}
|
|
|
|
// parseIncomingGroup buffers an "Incoming Groups" row. Columns:
|
|
//
|
|
// O D R S M
|
|
func (p *parser) parseIncomingGroup(fields []string) {
|
|
if len(fields) < 5 {
|
|
return
|
|
}
|
|
distance, err := parseFloat(fields[2])
|
|
if err != nil {
|
|
return
|
|
}
|
|
speed, _ := parseFloat(fields[3])
|
|
mass, _ := parseFloat(fields[4])
|
|
p.pendingIncomings = append(p.pendingIncomings, pendingIncoming{
|
|
originName: fields[0],
|
|
destinationName: fields[1],
|
|
distance: distance,
|
|
speed: speed,
|
|
mass: mass,
|
|
})
|
|
}
|
|
|
|
// resolvePending walks the buffered group/fleet/incoming rows and
|
|
// emits the typed entries on the report. Names that resolve neither
|
|
// against the parsed planet tables nor the "#NN" id syntax are
|
|
// skipped silently — they typically point at planets not visible to
|
|
// the local player. Stable LocalGroup IDs are derived from the
|
|
// per-report group index so repeated conversions of the same file
|
|
// produce byte-identical JSON.
|
|
func (p *parser) resolvePending() {
|
|
for _, pg := range p.pendingGroups {
|
|
dest, ok := p.lookupPlanetNumber(pg.destinationName)
|
|
if !ok {
|
|
continue
|
|
}
|
|
var origin *uint
|
|
if pg.originName != "" {
|
|
if n, ok := p.lookupPlanetNumber(pg.originName); ok {
|
|
v := n
|
|
origin = &v
|
|
}
|
|
}
|
|
var rng *report.Float
|
|
if pg.rangeStr != "" {
|
|
if r, err := parseFloat(pg.rangeStr); err == nil {
|
|
v := report.F(r)
|
|
rng = &v
|
|
}
|
|
}
|
|
var fleet *string
|
|
if pg.fleet != "" {
|
|
f := pg.fleet
|
|
fleet = &f
|
|
}
|
|
tech := map[string]report.Float{
|
|
"drive": report.F(pg.drive),
|
|
"weapons": report.F(pg.weapons),
|
|
"shields": report.F(pg.shields),
|
|
"cargo": report.F(pg.cargoTech),
|
|
}
|
|
p.rep.LocalGroup = append(p.rep.LocalGroup, report.LocalGroup{
|
|
OtherGroup: report.OtherGroup{
|
|
Number: pg.number,
|
|
Class: pg.class,
|
|
Tech: tech,
|
|
Cargo: pg.cargoType,
|
|
Load: report.F(pg.load),
|
|
Destination: dest,
|
|
Origin: origin,
|
|
Range: rng,
|
|
Mass: report.F(pg.mass),
|
|
},
|
|
ID: syntheticGroupID(pg.g),
|
|
State: pg.state,
|
|
Fleet: fleet,
|
|
})
|
|
}
|
|
|
|
for _, pf := range p.pendingFleets {
|
|
dest, ok := p.lookupPlanetNumber(pf.destinationName)
|
|
if !ok {
|
|
continue
|
|
}
|
|
var origin *uint
|
|
if pf.originName != "" {
|
|
if n, ok := p.lookupPlanetNumber(pf.originName); ok {
|
|
v := n
|
|
origin = &v
|
|
}
|
|
}
|
|
var rng *report.Float
|
|
if pf.rangeStr != "" {
|
|
if r, err := parseFloat(pf.rangeStr); err == nil {
|
|
v := report.F(r)
|
|
rng = &v
|
|
}
|
|
}
|
|
p.rep.LocalFleet = append(p.rep.LocalFleet, report.LocalFleet{
|
|
Name: pf.name,
|
|
Groups: pf.groups,
|
|
Destination: dest,
|
|
Origin: origin,
|
|
Range: rng,
|
|
State: pf.state,
|
|
})
|
|
}
|
|
|
|
for _, pi := range p.pendingIncomings {
|
|
origin, ok := p.lookupPlanetNumber(pi.originName)
|
|
if !ok {
|
|
continue
|
|
}
|
|
dest, ok := p.lookupPlanetNumber(pi.destinationName)
|
|
if !ok {
|
|
continue
|
|
}
|
|
p.rep.IncomingGroup = append(p.rep.IncomingGroup, report.IncomingGroup{
|
|
Origin: origin,
|
|
Destination: dest,
|
|
Distance: report.F(pi.distance),
|
|
Speed: report.F(pi.speed),
|
|
Mass: report.F(pi.mass),
|
|
})
|
|
}
|
|
|
|
for _, ps := range p.pendingShipProducts {
|
|
lp, ok := p.findLocalPlanet(ps.planetNumber)
|
|
if !ok {
|
|
continue
|
|
}
|
|
shipMass := ps.cost / 10
|
|
totalCost := calc.ShipBuildCost(
|
|
shipMass,
|
|
float64(lp.Material),
|
|
float64(lp.Resources),
|
|
)
|
|
// `ProdUsed` is the cumulative production-equivalent of the
|
|
// build progress so far. The real engine's `Progress` field
|
|
// accumulates across turns and the per-turn `ProdUsed` is a
|
|
// transient residual — neither of those is recoverable from a
|
|
// single legacy report. The derivation here keeps the value in
|
|
// the same units (production points) and in the right ballpark
|
|
// for synthetic-mode UI rendering; live engine reports do not
|
|
// flow through this parser, so the approximation never reaches
|
|
// production traffic. README.md skips section explains.
|
|
prodUsed := totalCost * ps.percent
|
|
p.rep.ShipProduction = append(p.rep.ShipProduction, report.ShipProduction{
|
|
Planet: ps.planetNumber,
|
|
Class: ps.class,
|
|
Cost: report.F(ps.cost),
|
|
ProdUsed: report.F(prodUsed),
|
|
Percent: report.F(ps.percent),
|
|
Free: report.F(ps.free),
|
|
})
|
|
}
|
|
}
|
|
|
|
// findLocalPlanet returns the parsed "Your Planets" entry with the
|
|
// given number, used by the ships-in-production resolver to read
|
|
// material / resources for the [calc.ShipBuildCost] derivation.
|
|
// Ships-in-production only lists own ships, so the lookup against
|
|
// `LocalPlanet` is correct.
|
|
func (p *parser) findLocalPlanet(number uint) (report.LocalPlanet, bool) {
|
|
for _, lp := range p.rep.LocalPlanet {
|
|
if lp.Number == number {
|
|
return lp, true
|
|
}
|
|
}
|
|
return report.LocalPlanet{}, false
|
|
}
|
|
|
|
// lookupPlanetNumber resolves a legacy planet reference — either a
|
|
// "#NN" by-id form or a planet name from one of the parsed planet
|
|
// tables. Returns false when the planet is not visible to the local
|
|
// player (the caller drops the row).
|
|
func (p *parser) lookupPlanetNumber(s string) (uint, bool) {
|
|
if strings.HasPrefix(s, "#") {
|
|
n, err := strconv.ParseUint(s[1:], 10, 32)
|
|
if err != nil {
|
|
return 0, false
|
|
}
|
|
return uint(n), true
|
|
}
|
|
for _, lp := range p.rep.LocalPlanet {
|
|
if lp.Name == s {
|
|
return lp.Number, true
|
|
}
|
|
}
|
|
for _, op := range p.rep.OtherPlanet {
|
|
if op.Name == s {
|
|
return op.Number, true
|
|
}
|
|
}
|
|
for _, up := range p.rep.UninhabitedPlanet {
|
|
if up.Name == s {
|
|
return up.Number, true
|
|
}
|
|
}
|
|
return 0, false
|
|
}
|
|
|
|
// syntheticGroupNamespace seeds [uuid.NewSHA1] for the per-report
|
|
// group-index → UUID derivation. The constant value is arbitrary;
|
|
// any UUID would work as long as it stays stable across releases so
|
|
// re-running the converter on the same input file yields the same
|
|
// LocalGroup IDs.
|
|
var syntheticGroupNamespace = uuid.MustParse("be01a000-0000-0000-0000-000000000001")
|
|
|
|
func syntheticGroupID(g uint) uuid.UUID {
|
|
return uuid.NewSHA1(syntheticGroupNamespace, fmt.Appendf(nil, "legacy-local-group-%d", g))
|
|
}
|
|
|
|
func dashOrEmpty(s string) string {
|
|
if s == "-" {
|
|
return ""
|
|
}
|
|
return s
|
|
}
|
|
|
|
func parseFloat(s string) (float64, error) {
|
|
return strconv.ParseFloat(s, 64)
|
|
}
|