292 lines
8.4 KiB
Go
292 lines
8.4 KiB
Go
// Package registry resolves scene-description artifacts into immutable combat
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// eligibility data.
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package registry
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import (
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"crypto/sha256"
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"encoding/hex"
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"encoding/json"
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"fmt"
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"mime"
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"sort"
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"strings"
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"sync"
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"gitea.maximumdirect.net/eric/notarius/internal/core/source"
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"gitea.maximumdirect.net/eric/notarius/internal/framework/contracts"
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"gitea.maximumdirect.net/eric/notarius/internal/modules/dnd"
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scenecodec "gitea.maximumdirect.net/eric/notarius/internal/modules/dnd/codec/scenedescriptions"
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)
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const (
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ReferenceSlot = "scene_descriptions"
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MaxBytes = 1048576
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emptyProjection = `{"scenes":[]}`
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)
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// MatchState identifies how a chunk relates to the resolved scene records.
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type MatchState string
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const (
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MatchExact MatchState = "exact"
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MatchMissing MatchState = "missing"
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MatchMismatched MatchState = "mismatched"
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)
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// ChunkMatch describes whether a scene record exactly covers a chunk. Kind is
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// populated only for an exact match.
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type ChunkMatch struct {
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State MatchState
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Kind dnd.SceneKind
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}
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type sceneEligibility struct {
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sourceID string
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startUnitID int
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endUnitID int
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kind dnd.SceneKind
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}
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// Registry is an immutable, validated eligibility view. It retains no scene
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// prose, raw reference bytes, or reference provenance.
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type Registry struct {
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bound bool
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digest string
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scenesByID map[string]sceneEligibility
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}
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// Resolver holds an immutable construction-time view and memoizes immutable
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// operation-time views by raw reference identity and eligibility digest.
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type Resolver struct {
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seeded *Registry
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mu sync.Mutex
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cache map[string]*Registry
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rawCache map[string]*Registry
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}
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// NewResolver validates a materialized construction-time scene reference. An
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// empty slot is permitted because a generated reference is supplied only at
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// operation time.
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func NewResolver(references contracts.ReferenceSet) (*Resolver, error) {
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seeded, err := Resolve(constructionReferences(references))
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if err != nil {
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return nil, err
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}
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return &Resolver{
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seeded: seeded,
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cache: make(map[string]*Registry),
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rawCache: make(map[string]*Registry),
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}, nil
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}
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func constructionReferences(references contracts.ReferenceSet) contracts.ReferenceSet {
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slot, ok := references.Slots[ReferenceSlot]
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if !ok || len(slot.Items) > 0 {
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return references
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}
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cloned := contracts.ReferenceSet{Slots: make(map[string]contracts.ResolvedReferenceSlot, len(references.Slots))}
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for name, value := range references.Slots {
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cloned.Slots[name] = value
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}
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delete(cloned.Slots, ReferenceSlot)
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return cloned
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}
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// Seeded returns the construction-time eligibility view.
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func (r *Resolver) Seeded() *Registry {
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if r == nil {
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return nil
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}
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return r.seeded
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}
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// Resolve returns the generated operation-time view when the scene slot is
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// present, otherwise it returns the construction-time view.
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func (r *Resolver) Resolve(references contracts.ReferenceSet) (*Registry, error) {
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if r == nil {
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return Resolve(references)
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}
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if _, ok := references.Slots[ReferenceSlot]; !ok {
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return r.seeded, nil
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}
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slot := references.Slots[ReferenceSlot]
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rawKey := ""
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if len(slot.Items) == 1 {
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rawKey = rawReferenceKey(slot.Items[0])
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}
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r.mu.Lock()
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defer r.mu.Unlock()
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if rawKey != "" {
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if cached, ok := r.rawCache[rawKey]; ok {
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return cached, nil
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}
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}
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resolved, err := Resolve(references)
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if err != nil {
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return nil, err
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}
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if sameEligibility(r.seeded, resolved) {
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if rawKey != "" {
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r.rawCache[rawKey] = r.seeded
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}
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return r.seeded, nil
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}
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if cached, ok := r.cache[resolved.EligibilityDigest()]; ok {
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if rawKey != "" {
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r.rawCache[rawKey] = cached
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}
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return cached, nil
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}
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r.cache[resolved.EligibilityDigest()] = resolved
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if rawKey != "" {
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r.rawCache[rawKey] = resolved
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}
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return resolved, nil
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}
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func rawReferenceKey(item contracts.ReferenceItem) string {
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digest := strings.ToLower(strings.TrimSpace(item.Digest))
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if !validSHA256Digest(digest) {
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digest = semanticDigest(item.Content)
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}
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return strings.ToLower(strings.TrimSpace(item.MediaType)) + "\x00" + digest
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}
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func validSHA256Digest(value string) bool {
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if len(value) != len("sha256:")+sha256.Size*2 || !strings.HasPrefix(value, "sha256:") {
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return false
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}
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decoded, err := hex.DecodeString(strings.TrimPrefix(value, "sha256:"))
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return err == nil && len(decoded) == sha256.Size
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}
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func sameEligibility(first, second *Registry) bool {
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if first == nil || second == nil {
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return first == second
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}
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return first.bound == second.bound && first.digest == second.digest
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}
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// Resolve validates one optional scene-description reference into an
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// eligibility-only view. An absent slot is represented by the canonical empty
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// projection so required generated bindings have a stable sentinel identity.
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func Resolve(references contracts.ReferenceSet) (*Registry, error) {
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slot, ok := references.Slots[ReferenceSlot]
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if !ok {
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return &Registry{
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digest: semanticDigest([]byte(emptyProjection)),
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scenesByID: map[string]sceneEligibility{},
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}, nil
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}
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if len(slot.Items) != 1 {
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return nil, fmt.Errorf("reference slot %q must contain exactly one item", ReferenceSlot)
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}
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item := slot.Items[0]
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mediaType, _, err := mime.ParseMediaType(item.MediaType)
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if err != nil {
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return nil, fmt.Errorf("reference slot %q item media type is invalid", ReferenceSlot)
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}
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if !strings.EqualFold(mediaType, scenecodec.MediaType) {
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return nil, fmt.Errorf("reference slot %q item media type must be %s", ReferenceSlot, scenecodec.MediaType)
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}
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if len(item.Content) > MaxBytes {
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return nil, fmt.Errorf("reference slot %q item is %d bytes, limit %d", ReferenceSlot, len(item.Content), MaxBytes)
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}
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value, err := scenecodec.New().Decode(item.Content)
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if err != nil {
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return nil, fmt.Errorf("decode scene eligibility: invalid approved scene JSON")
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}
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scenesByID := make(map[string]sceneEligibility, len(value.Scenes))
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projection := make([]projectedScene, 0, len(value.Scenes))
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for _, scene := range value.Scenes {
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if _, exists := scenesByID[scene.ID]; exists {
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return nil, fmt.Errorf("scene eligibility contains duplicate scene ID %q", scene.ID)
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}
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eligibility := sceneEligibility{
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sourceID: scene.SourceRef.SourceID,
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startUnitID: scene.SourceRef.StartUnitID,
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endUnitID: scene.SourceRef.EndUnitID,
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kind: scene.Kind,
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}
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scenesByID[scene.ID] = eligibility
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projection = append(projection, projectedScene{
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ID: scene.ID,
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SourceRef: source.SourceRef{SourceID: eligibility.sourceID, StartUnitID: eligibility.startUnitID, EndUnitID: eligibility.endUnitID},
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Kind: eligibility.kind,
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})
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}
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content, err := eligibilityProjection(projection)
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if err != nil {
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return nil, fmt.Errorf("encode scene eligibility projection: %w", err)
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}
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return &Registry{
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bound: true,
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digest: semanticDigest(content),
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scenesByID: scenesByID,
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}, nil
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}
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// Bound reports whether an approved scene-description reference was supplied.
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func (r *Registry) Bound() bool { return r != nil && r.bound }
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// Count reports the number of scene records in the eligibility view.
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func (r *Registry) Count() int {
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if r == nil {
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return 0
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}
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return len(r.scenesByID)
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}
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// EligibilityDigest returns the semantic SHA-256 digest of the canonical
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// eligibility projection, including the canonical unbound projection.
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func (r *Registry) EligibilityDigest() string {
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if r == nil {
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return ""
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}
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return r.digest
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}
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// Match classifies a chunk against its scene record. The kind is intentionally
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// unavailable unless the ID and complete source range match exactly.
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func (r *Registry) Match(chunk *source.Chunk) ChunkMatch {
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if r == nil || chunk == nil {
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return ChunkMatch{State: MatchMissing}
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}
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scene, ok := r.scenesByID[chunk.ID]
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if !ok {
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return ChunkMatch{State: MatchMissing}
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}
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if scene.sourceID != chunk.Ref.SourceID || scene.startUnitID != chunk.Ref.StartUnitID || scene.endUnitID != chunk.Ref.EndUnitID {
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return ChunkMatch{State: MatchMismatched}
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}
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return ChunkMatch{State: MatchExact, Kind: scene.kind}
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}
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type projectedScene struct {
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ID string `json:"id"`
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SourceRef source.SourceRef `json:"source_ref"`
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Kind dnd.SceneKind `json:"kind"`
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}
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type projectedSceneList struct {
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Scenes []projectedScene `json:"scenes"`
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}
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func eligibilityProjection(scenes []projectedScene) ([]byte, error) {
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sort.Slice(scenes, func(i, j int) bool { return scenes[i].ID < scenes[j].ID })
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return json.Marshal(projectedSceneList{Scenes: scenes})
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}
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func semanticDigest(content []byte) string {
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sum := sha256.Sum256(content)
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return "sha256:" + hex.EncodeToString(sum[:])
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}
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