Files
gogobee/internal/plugin/dnd_expedition_supplies.go
prosolis b333d05443 N3/P6c: a fight the whole party sits down for
`!fight` seats the expedition's roster instead of the one player who typed
it. Seat 0 is the leader, always: the session row is theirs, the lock is
theirs, and `!flee`, the fork, and `!extract` stay their call.

A monster that wins initiative now swings before anyone speaks. The session
layer used to park every new fight on a player_turn, which is true of the
hardcoded solo order and a lie about a party's -- the enemy would forfeit
round 1 and nobody would notice. `startPartyCombatSession` rolls the order
and sets the phase from it; `handleFightCmd` settles the round before it
announces, so the opening block narrates the hit rather than quietly
showing its damage.

Members were invisible to two commands that had no business ignoring them:
`!cast` queued a spell for "next combat" while its caster was standing in
one, and `!rest` healed a seated member to full mid boss fight. Both now
resolve through the party.

Nobody leaves without an answer. A downed member's `!fight` opens the
party's fight and tells them why they are not in it. The leader's `!extract`
reaches everyone it drags out of the dungeon, and everyone rolls for what
moved into their house while they were gone.

Supplies burn at 50% x N x 4/5 -- a party eats more than one and less than
N. The ratio is exact: 0.8 as a float truncates a party of three to 119%,
a permanent tax nobody would have found.

Solo is untouched, byte for byte. One seat means one build, one INSERT, no
participant rows, the same RNG draws in the same order -- the combat
characterization golden does not move, and neither does the balance corpus.
2026-07-09 23:23:17 -07:00

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package plugin
import (
"fmt"
"log/slog"
"math/rand/v2"
"strings"
)
// Phase 12 E1b — Supply procurement, daily burn, and depletion effects.
// Spec: gogobee_expedition_system.md §4.
// Pack pricing/yield. §4.2.
const (
SupplyPackStandardSU = 10
SupplyPackStandardCoins = 50
SupplyPackDeluxeSU = 20
SupplyPackDeluxeCoins = 90
SupplyForageMaxSU = 4 // 1d4 cap (Ranger, WIS DC 12) — §4.2
)
// supplyPackCaps returns the per-tier maximum standard and deluxe pack
// counts a player can buy for an expedition. D5-a: caps now scale by
// zone tier so a T5 loadout actually clears DailyBurn(raw) × intended
// days × harsh-multiplier — see gogobee_long_expedition_plan.md §D5.
// Intended-day anchors come from the §2 target table (T1=2 → T5=7).
func supplyPackCaps(tier ZoneTier) (standard, deluxe int) {
switch tier {
case ZoneTierBeginner:
return 2, 1
case ZoneTierApprentice:
return 2, 1
case ZoneTierJourneyman:
return 3, 1
case ZoneTierVeteran:
return 5, 1
case ZoneTierLegendary:
return 7, 2
}
return 3, 1
}
// expeditionTargetDays returns the §2 target-duration anchor for a zone
// tier — what the supply-cap math, balanced loadout, and the
// "Day X / ~Y expected" line in !expedition status are all sized against.
func expeditionTargetDays(tier ZoneTier) int {
switch tier {
case ZoneTierBeginner:
return 2
case ZoneTierApprentice:
return 3
case ZoneTierJourneyman:
return 4
case ZoneTierVeteran:
return 5
case ZoneTierLegendary:
return 7
}
return 4
}
// SupplyLoadout names a tier-scaled preset purchase. D5-b: empty-arg
// `!expedition start <zone>` now prompts the player to pick one of these
// rather than silently defaulting to 1 standard pack. Raw `Ns Md` syntax
// remains the advanced override.
type SupplyLoadout int
const (
LoadoutLean SupplyLoadout = iota
LoadoutBalanced
LoadoutHeavy
)
// loadoutPurchase returns the SupplyPurchase for a preset at a tier.
// Lean: covers intended days at raw daily burn (cheap, no harsh buffer).
// Balanced: ~harsh-ready for an intended-length run (recommended).
// Heavy: equals supplyPackCaps — the harsh×3 ceiling D5-a sized for.
func loadoutPurchase(tier ZoneTier, l SupplyLoadout) SupplyPurchase {
switch l {
case LoadoutHeavy:
std, dlx := supplyPackCaps(tier)
return SupplyPurchase{StandardPacks: std, DeluxePacks: dlx}
case LoadoutBalanced:
switch tier {
case ZoneTierBeginner, ZoneTierApprentice:
return SupplyPurchase{StandardPacks: 2}
case ZoneTierJourneyman:
return SupplyPurchase{StandardPacks: 3}
case ZoneTierVeteran:
return SupplyPurchase{StandardPacks: 5}
case ZoneTierLegendary:
return SupplyPurchase{StandardPacks: 5, DeluxePacks: 1}
}
return SupplyPurchase{StandardPacks: 2}
default: // LoadoutLean
switch tier {
case ZoneTierBeginner, ZoneTierApprentice:
return SupplyPurchase{StandardPacks: 1}
case ZoneTierJourneyman:
return SupplyPurchase{StandardPacks: 2}
case ZoneTierVeteran:
return SupplyPurchase{StandardPacks: 3}
case ZoneTierLegendary:
return SupplyPurchase{StandardPacks: 5}
}
return SupplyPurchase{StandardPacks: 1}
}
}
// parseLoadoutToken returns the preset selected by tok, if any. Accepts
// short forms (l/b/h) and a couple of synonyms. Empty/unknown → false.
func parseLoadoutToken(tok string) (SupplyLoadout, bool) {
switch strings.ToLower(strings.TrimSpace(tok)) {
case "lean", "l", "light":
return LoadoutLean, true
case "balanced", "b", "bal", "standard":
return LoadoutBalanced, true
case "heavy", "h", "max", "full":
return LoadoutHeavy, true
}
return 0, false
}
// supplyDailyBurn returns the base SU/day for a zone tier (§4.1).
// Tier 1: 1, Tier 2: 1.5, Tier 3: 2, Tier 4: 3, Tier 5: 4.
func supplyDailyBurn(tier ZoneTier) float32 {
switch tier {
case ZoneTierBeginner:
return 1.0
case ZoneTierApprentice:
return 1.5
case ZoneTierJourneyman:
return 2.0
case ZoneTierVeteran:
return 3.0
case ZoneTierLegendary:
return 4.0
}
return 1.0
}
// supplyHarshMultiplier returns the harsh-conditions multiplier (§4.1).
// Tier 1×1, Tier 2×1.5, Tier 3×2, Tier 4×2.5, Tier 5×3.
func supplyHarshMultiplier(tier ZoneTier) float32 {
switch tier {
case ZoneTierBeginner:
return 1.0
case ZoneTierApprentice:
return 1.5
case ZoneTierJourneyman:
return 2.0
case ZoneTierVeteran:
return 2.5
case ZoneTierLegendary:
return 3.0
}
return 1.0
}
// applyRangerForage grants the Ranger's daily 1d4-SU forage yield (§4.2,
// wired in D5-c). Returns the SU added — 0 for non-Rangers, when the
// player has already foraged today, or when supplies are already at Max.
// The grant is headroom-capped so a Heavy loadout doesn't overflow its
// purchased ceiling. rng is the test-injectable [0,n) source; nil falls
// back to math/rand. Caller owns the persistence.
//
// Sizing rationale: with D5-a caps so generous (Lean T5 = 50 SU vs ~14 SU
// burned over a 7-day intended run at phase5B×0.5), this perk operates
// as a quiet Lean-loadout cushion, not a Heavy multiplier — average +2.5
// SU/day off a Ranger is roughly one extra day of late-stage T5 burn
// across a full expedition.
func applyRangerForage(e *Expedition, c *DnDCharacter, rng func(int) int) float32 {
if e == nil || c == nil || c.Class != ClassRanger {
return 0
}
if e.Supplies.ForagedToday {
return 0
}
headroom := e.Supplies.Max - e.Supplies.Current
if headroom <= 0 {
e.Supplies.ForagedToday = true
return 0
}
var roll int
if rng != nil {
roll = rng(SupplyForageMaxSU) + 1
} else {
roll = rand.IntN(SupplyForageMaxSU) + 1
}
gain := float32(roll)
if gain > headroom {
gain = headroom
}
e.Supplies.Current += gain
e.Supplies.ForagedToday = true
return gain
}
// SupplyDepletionState classifies remaining supply ratio (§4.3).
type SupplyDepletionState int
const (
SupplyNormal SupplyDepletionState = iota
SupplyRationing
SupplySevereRationing
SupplyStarvation
)
// supplyDepletion returns the depletion state for a supplies snapshot.
// Brackets: >25% normal, 1025% rationing, 19% severe, 0 starvation.
func supplyDepletion(s ExpeditionSupplies) SupplyDepletionState {
if s.Max <= 0 {
return SupplyNormal
}
if s.Current <= 0 {
return SupplyStarvation
}
pct := (s.Current / s.Max) * 100
switch {
case pct >= 25:
return SupplyNormal
case pct >= 10:
return SupplyRationing
default:
return SupplySevereRationing
}
}
// supplyRollModifier maps depletion state to the universal roll penalty
// applied to attack/skill rolls (§4.3). Starvation has its own CON bleed
// handled elsewhere; the roll mod for starvation matches severe rationing
// floor so combat math doesn't divide by zero.
func supplyRollModifier(state SupplyDepletionState) int {
switch state {
case SupplyRationing:
return -1
case SupplySevereRationing, SupplyStarvation:
return -2
}
return 0
}
// supplyAllowsLongRest returns false when severe rationing (§4.3) blocks
// long rests. Starvation also blocks (forced extraction is the next step).
func supplyAllowsLongRest(state SupplyDepletionState) bool {
return state == SupplyNormal || state == SupplyRationing
}
// SupplyPurchase represents an expedition outfitting choice.
type SupplyPurchase struct {
StandardPacks int
DeluxePacks int
}
// Total SU yield from a purchase.
func (p SupplyPurchase) Total() float32 {
return float32(p.StandardPacks*SupplyPackStandardSU + p.DeluxePacks*SupplyPackDeluxeSU)
}
// Total cost in coins.
func (p SupplyPurchase) Cost() int {
return p.StandardPacks*SupplyPackStandardCoins + p.DeluxePacks*SupplyPackDeluxeCoins
}
// Validate enforces §4.2 caps (no negatives, at least one pack
// purchased — an expedition without supplies is not a legal start) and
// the per-tier maximums from supplyPackCaps.
func (p SupplyPurchase) Validate(tier ZoneTier) error {
if p.StandardPacks < 0 || p.DeluxePacks < 0 {
return fmt.Errorf("supply pack counts must be non-negative")
}
stdCap, dlxCap := supplyPackCaps(tier)
if p.StandardPacks > stdCap {
return fmt.Errorf("standard packs capped at %d for T%d (got %d)", stdCap, int(tier), p.StandardPacks)
}
if p.DeluxePacks > dlxCap {
return fmt.Errorf("deluxe packs capped at %d for T%d (got %d)", dlxCap, int(tier), p.DeluxePacks)
}
if p.StandardPacks == 0 && p.DeluxePacks == 0 {
return fmt.Errorf("expedition requires at least one supply pack")
}
return nil
}
// makeSupplies builds an ExpeditionSupplies from a purchase, sized for the
// given zone tier. Harsh-conditions multiplier defaults to 1 (off);
// upgraded by E2/E3 events.
func makeSupplies(tier ZoneTier, p SupplyPurchase) ExpeditionSupplies {
total := p.Total()
return ExpeditionSupplies{
Current: total,
Max: total,
DailyBurn: supplyDailyBurn(tier),
HarshMod: 1.0,
PacksStandard: p.StandardPacks,
PacksDeluxe: p.DeluxePacks,
}
}
// addSupplyPurchase folds a joining member's packs into the party's pool
// (N3/P6b). Everyone carries their own rations in, so both Current and Max rise
// by what they bought.
//
// Raising Max alongside Current is what keeps supplyDepletion honest: it reads
// the ratio, and a member arriving with a full pack must not read as the party
// suddenly starving. On Day 1 — the only day an invite is legal — nothing has
// burned yet, so Current == Max and the fold is exact.
func addSupplyPurchase(s ExpeditionSupplies, p SupplyPurchase) ExpeditionSupplies {
total := p.Total()
s.Current += total
s.Max += total
s.PacksStandard += p.StandardPacks
s.PacksDeluxe += p.DeluxePacks
return s
}
// applyDailyBurn deducts one day's supplies from the snapshot (caller
// persists). Returns the new snapshot and the SU consumed.
//
// Multiplier precedence (§4.1, §8.3):
// - siege overrides everything with a hard 2× floor (even for tier 1
// where HarshMod is 1×) — the dungeon is actively starving you out.
// - otherwise, harshActive applies HarshMod (zone-tier scaled).
// phase5BDailyBurnRatePct is the shipped daily-burn multiplier from
// Phase 3-B's sweep + Phase 5-B's post-buff re-validation. 50 means
// "half live burn" — needed because the Phase 5-B player power floor
// keeps T4/T5 expeditioners alive long enough that the original 100%
// burn rate starves them out before extraction. See
// gogobee_expedition_difficulty.md Phase 3-B (sweep) and Phase 5-B
// (re-validated under HP buff, shipped).
const phase5BDailyBurnRatePct = 50
func applyDailyBurn(s ExpeditionSupplies, harshActive, siege bool) (ExpeditionSupplies, float32) {
return applyDailyBurnP(s, harshActive, siege, phase5BDailyBurnRatePct)
}
// partyBurnEfficiency is the per-head discount a party gets on rations: three
// people eat 2.4 days' worth per day, not 3. Sharing a fire, a pot and a watch
// rota is worth something, and it is the one place C1 asked for a party to be
// mechanically better off than three solo runs.
//
// It is an exact ratio rather than the literal 0.8 because the rate is truncated
// to an int: float32(50*3) * 0.8 evaluates a hair under 120, and int() would
// round it to 119 — a silent, permanent tax on every party of three.
const (
partyBurnEfficiencyNum = 4
partyBurnEfficiencyDen = 5
)
// applyExpeditionDailyBurn is applyDailyBurn with the roster folded in: a party
// of N burns N × 0.8 days of supplies per day, against a pool that P6b's
// addSupplyPurchase has already grown by everyone's packs.
//
// A solo expedition — every expedition that has ever run, and everything the
// balance corpus measured — resolves to phase5BDailyBurnRatePct exactly, so this
// is a no-op for it down to the float. On a roster read error it burns the solo
// rate: undercharging a party is a bug, starving them on a SQLite hiccup is a
// lost expedition.
func applyExpeditionDailyBurn(e *Expedition, harshActive, siege bool) (ExpeditionSupplies, float32) {
return applyDailyBurnP(e.Supplies, harshActive, siege, expeditionBurnRatePct(e.ID))
}
func expeditionBurnRatePct(expeditionID string) int {
n, err := partySize(expeditionID)
if err != nil {
slog.Warn("expedition: party size read failed, burning at the solo rate",
"expedition", expeditionID, "err", err)
return phase5BDailyBurnRatePct
}
if n <= 1 {
return phase5BDailyBurnRatePct
}
return phase5BDailyBurnRatePct * n * partyBurnEfficiencyNum / partyBurnEfficiencyDen
}
// applyDailyBurnP is the rate-parameterized form used by the Phase 3-B
// sim harness lever sweep. burnRatePct == 0 means "use live" (100%);
// any positive value scales the final per-day burn by that percent
// (e.g. 50 = half burn). Live callers always go through applyDailyBurn.
// See gogobee_expedition_difficulty.md Phase 3-B.
func applyDailyBurnP(s ExpeditionSupplies, harshActive, siege bool, burnRatePct int) (ExpeditionSupplies, float32) {
burn := s.DailyBurn
switch {
case siege:
mult := s.HarshMod
if mult < 2 {
mult = 2
}
burn *= mult
case harshActive:
mult := s.HarshMod
if mult <= 0 {
mult = 1
}
burn *= mult
}
if burnRatePct > 0 {
burn = burn * float32(burnRatePct) / 100
}
s.Current -= burn
if s.Current < 0 {
s.Current = 0
}
// Reset per-day forage flag.
s.ForagedToday = false
return s, burn
}