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Each walked room gets one auto-harvest pass across every applicable
action (forage, scavenge, mine, fish in water zones, plus the class-
restricted essence/commune). Class/kill/event gates are inherited
from the manual harvest path.
Stop rules:
- Rare+ nodes are NOT auto-attempted; they pause the walk via
stopRareNode so the player spends the attempt deliberately.
- Standard/Elite/Patrol interrupts hard-stop the walk (stopEnded on
death, new stopHarvestCombat on survive).
- Noise interrupts apply threat+2 and continue, matching manual
!harvest behavior.
Display:
- Per-room compact footer ("+2 Scrap Iron, +1 Shadow Herb · 1 fail")
streamed inline as autopilot walks.
- Walk-end cumulative tally appended to whatever final block fires.
No SU surcharge — parity with manual !harvest.
Pure helpers unit-tested (rarity classification, footer rendering,
walk tally sort order, rare-pending dedup). Full autoHarvestRoom
path needs prod DB and follows the existing setupAuditTestDB gating
pattern.
293 lines
9.2 KiB
Go
293 lines
9.2 KiB
Go
package plugin
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import (
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"fmt"
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"math/rand/v2"
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"sort"
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"strings"
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"maunium.net/go/mautrix/id"
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)
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// Phase 2 of expedition autopilot — auto-harvest on room entry.
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//
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// Design (settled 2026-05-14):
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// - All applicable actions auto-run on every walked room. Class- and
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// kill-gated nodes filter themselves out via the existing per-resource
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// restrictions.
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// - Rare+ nodes are NOT auto-attempted. If any sit available in the
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// room, autopilot stops with stopRareNode so the player can spend the
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// attempt deliberately.
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// - One attempt per eligible node per visit. A failed roll doesn't
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// retry; it logs the fail and moves on. Charges only decrement on
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// non-Nothing outcomes (mirrors handleHarvestCmd).
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// - Noise interrupts apply threat++ and continue (parity with manual).
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// - Standard/Elite/Patrol combat interrupts hard-stop the walk:
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// stopEnded on death, stopHarvestCombat otherwise.
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// - No SU surcharge — manual !harvest is free; autopilot matches.
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// - Per-room footer ("+2 Iron, +1 Sage; 1 fail") + a walk-end tally
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// across all rooms.
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// autoHarvestSummary holds the aggregated outcome for one room's
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// auto-harvest pass. Per-room footer renders from this; expeditionCmdRun
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// also folds it into a walk-wide tally for the closing block.
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type autoHarvestSummary struct {
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Yields map[string]int // resourceID -> total qty granted
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Names map[string]string // resourceID -> display name (capture once)
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Fails int
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NoiseInts int
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}
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// autoHarvestResult is what autoHarvestRoom returns to the autopilot loop.
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type autoHarvestResult struct {
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Summary autoHarvestSummary
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RarePending []ZoneResource // non-empty = at least one Rare+ node sits in the room
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CombatNarr string // non-empty = a combat interrupt fired during the pass
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PlayerEnded bool // true = combat killed the player
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}
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// allHarvestActions lists every action autopilot will try per room. Order
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// matters only for footer readability — class- and gate-restricted nodes
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// drop out via the existing filters.
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var allHarvestActions = []HarvestAction{
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HarvestForage,
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HarvestScavenge,
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HarvestMine,
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HarvestFish,
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HarvestEssence,
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HarvestCommune,
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}
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// isRarePlus reports whether a resource's rarity should pause autopilot.
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// Common/Uncommon are auto-attempted; Rare and above stop the walk.
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func isRarePlus(r DnDRarity) bool {
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switch r {
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case RarityRare, RarityEpic, RarityVeryRare, RarityLegendary:
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return true
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}
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return false
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}
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// autoHarvestRoom runs a single auto-harvest pass on the player's current
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// room. Called by expeditionCmdRun between walked rooms. Does not advance
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// the room; only resolves nodes already at the player's feet.
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func (p *AdventurePlugin) autoHarvestRoom(
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userID id.UserID, exp *Expedition, char *DnDCharacter,
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) (autoHarvestResult, error) {
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res := autoHarvestResult{
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Summary: autoHarvestSummary{
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Yields: map[string]int{},
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Names: map[string]string{},
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},
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}
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if exp == nil || exp.RunID == "" {
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return res, nil
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}
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run, err := getZoneRun(exp.RunID)
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if err != nil || run == nil {
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return res, nil
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}
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if !currentRoomCleared(run) {
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return res, nil
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}
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nodeID := harvestNodeIDFor(run)
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nodes := loadHarvestNodes(exp, nodeID)
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if len(nodes) == 0 {
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return res, nil
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}
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zone, _ := getZone(exp.ZoneID)
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persistNodes := false
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for _, action := range allHarvestActions {
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if action == HarvestFish && !isFishingZone(exp.ZoneID) {
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continue
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}
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if blockReason := zoneConditionHarvestBlock(exp, action); blockReason != "" {
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continue
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}
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// One pass per action. Iterate every eligible node (not just the
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// lowest-DC one) so a room with two foragables gets two attempts.
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for i := range nodes {
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n := &nodes[i]
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if n.CurrentCharges <= 0 {
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continue
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}
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rdef, ok := FindZoneResource(exp.ZoneID, n.ResourceID)
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if !ok || rdef.Action != action {
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continue
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}
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if rdef.ClassRestrict != "" && rdef.ClassRestrict != char.Class {
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continue
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}
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if rdef.RequiresKill != "" && !regionKillsContains(exp, rdef.RequiresKill) {
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continue
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}
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if rdef.ConditionalEvent != "" && !regionEventActive(exp, rdef.ConditionalEvent) {
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continue
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}
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if isRarePlus(rdef.Rarity) {
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// Defer the decision to the player; don't consume the attempt.
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res.RarePending = append(res.RarePending, rdef)
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continue
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}
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// Interrupt roll, same model as handleHarvestCmd.
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interrupt, intTotal := resolveCombatInterrupt(
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exp.ThreatLevel, int(zone.Tier), char.Class, exp.ZoneID, nil)
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switch interrupt {
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case InterruptNoise:
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_ = applyThreatDelta(exp.ID, 2, "harvest noise (§4.2, autopilot)")
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res.Summary.NoiseInts++
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_ = appendExpeditionLog(exp.ID, exp.CurrentDay, "interrupt",
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fmt.Sprintf("autopilot noise %s total=%d", string(action), intTotal), "")
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// fall through to the d20 roll, same as manual harvest.
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case InterruptStandard, InterruptElite, InterruptPatrol:
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body, ended := p.runHarvestInterrupt(userID, exp, run, zone, interrupt)
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res.CombatNarr = body
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res.PlayerEnded = ended
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_ = appendExpeditionLog(exp.ID, exp.CurrentDay, "interrupt",
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fmt.Sprintf("autopilot %s kind=%d total=%d", string(action), int(interrupt), intTotal), "")
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if persistNodes {
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_ = saveHarvestNodes(exp, nodeID, nodes)
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}
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return res, nil
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}
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// Resolve the harvest attempt.
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roll := rand.IntN(20) + 1
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mod := harvestActionAbility(char, action) + classHarvestBonus(char.Class, action)
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if action == HarvestFish {
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if adv, _ := loadAdvCharacter(userID); adv != nil {
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mod += fishingSkillBonus(adv.FishingSkill)
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}
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}
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total := roll + mod
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dcDelta, _ := zoneConditionHarvestDCMod(exp, action)
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effectiveDC := rdef.DC + dcDelta
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outcome := resolveHarvestOutcome(total, effectiveDC)
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outcome = rangerRareCatchUpgrade(char.Class, action, outcome, nil)
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var grantedQty int
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switch outcome {
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case OutcomeNothing:
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res.Summary.Fails++
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case OutcomeCommon:
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grantedQty = 1
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case OutcomeStandard:
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grantedQty = rand.IntN(3) + 1
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case OutcomeRich:
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grantedQty = rand.IntN(3) + 1
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if bonus := pickRichBonus(exp.ZoneID, rdef.ID); bonus != nil {
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_ = grantHarvestYield(userID, *bonus, 1)
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res.Summary.Yields[bonus.ID] += 1
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res.Summary.Names[bonus.ID] = bonus.Name
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}
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}
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if grantedQty > 0 {
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_ = grantHarvestYield(userID, rdef, grantedQty)
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res.Summary.Yields[rdef.ID] += grantedQty
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res.Summary.Names[rdef.ID] = rdef.Name
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n.CurrentCharges--
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persistNodes = true
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}
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_ = appendExpeditionLog(exp.ID, exp.CurrentDay, "harvest",
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fmt.Sprintf("autopilot %s %s d20=%d total=%d dc=%d → %s",
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string(action), rdef.ID, roll, total, rdef.DC, string(outcome)), "")
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}
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}
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if persistNodes {
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if err := saveHarvestNodes(exp, nodeID, nodes); err != nil {
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_ = appendExpeditionLog(exp.ID, exp.CurrentDay, "harvest",
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fmt.Sprintf("autopilot persistence error: %v", err), "")
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}
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}
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return res, nil
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}
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// renderAutoHarvestFooter formats one room's pass as a single compact
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// line: "_+2 Scrap Iron, +1 Shadow Herb · 1 fail · 1 close call._".
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// Empty string means there's nothing worth showing.
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func renderAutoHarvestFooter(s autoHarvestSummary) string {
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if len(s.Yields) == 0 && s.Fails == 0 && s.NoiseInts == 0 {
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return ""
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}
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parts := []string{}
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// Stable ordering — sort yield keys so test output is deterministic
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// and the footer reads consistently across rooms.
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keys := make([]string, 0, len(s.Yields))
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for k := range s.Yields {
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keys = append(keys, k)
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}
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sort.Strings(keys)
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for _, k := range keys {
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parts = append(parts, fmt.Sprintf("+%d %s", s.Yields[k], s.Names[k]))
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}
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if s.Fails > 0 {
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parts = append(parts, fmt.Sprintf("%d fail", s.Fails))
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}
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if s.NoiseInts > 0 {
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noun := "close call"
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if s.NoiseInts > 1 {
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noun = "close calls"
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}
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parts = append(parts, fmt.Sprintf("%d %s", s.NoiseInts, noun))
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}
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return "_🎒 " + strings.Join(parts, " · ") + "._"
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}
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// renderWalkTally formats the cross-room cumulative haul for the walk's
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// final block. Empty string when nothing was gathered.
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func renderWalkTally(yields map[string]int, names map[string]string) string {
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if len(yields) == 0 {
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return ""
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}
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keys := make([]string, 0, len(yields))
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for k := range yields {
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keys = append(keys, k)
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}
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sort.Strings(keys)
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var b strings.Builder
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b.WriteString("**Walk haul:** ")
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for i, k := range keys {
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if i > 0 {
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b.WriteString(", ")
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}
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b.WriteString(fmt.Sprintf("%d %s", yields[k], names[k]))
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}
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return b.String()
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}
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// renderRarePendingFooter announces which Rare+ nodes triggered the
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// autopilot pause. Used by the stop reason footer in expeditionCmdRun.
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func renderRarePendingFooter(pending []ZoneResource) string {
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if len(pending) == 0 {
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return ""
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}
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// De-dup by ID (a single resource can have multiple charges across
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// nodes; we want one mention).
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seen := map[string]bool{}
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var names []string
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for _, r := range pending {
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if seen[r.ID] {
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continue
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}
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seen[r.ID] = true
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names = append(names, fmt.Sprintf("**%s** (%s)", r.Name, string(r.Rarity)))
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}
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sort.Strings(names)
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verb := "is"
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if len(names) > 1 {
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verb = "are"
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}
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return fmt.Sprintf("⏸ **Autopilot paused — rare yield nearby.** %s %s sitting in this room. `!%s` to take the shot, or `!expedition run` to push past.",
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strings.Join(names, ", "), verb,
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// suggest the action of the first pending resource as a hint.
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string(pending[0].Action))
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}
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