// Package npcoccurrences encodes durable D&D NPC occurrence artifacts. package npcoccurrences import ( "embed" "fmt" "strings" "gitea.maximumdirect.net/eric/notarius/internal/framework/contracts" "gitea.maximumdirect.net/eric/notarius/internal/modules/dnd" "gitea.maximumdirect.net/eric/notarius/internal/modules/dnd/codec/candidatejson" ) const ( SchemaID = "notarius.dnd.npc_occurrences" SchemaName = "notarius_dnd_npc_occurrences_v1" SchemaVersion = "v1" MediaType = "application/json" ) //go:embed assets/schemas/dnd_npc_occurrences.v1.json var schemaAssets embed.FS var _ contracts.ArtifactCodec[dnd.NPCOccurrenceList] = (*Codec)(nil) type Codec struct{} func New() *Codec { return &Codec{} } func (c *Codec) Kind() contracts.ArtifactKind { return dnd.NPCOccurrenceListKind } func (c *Codec) Schema() contracts.ArtifactSchema { raw, err := schemaAssets.ReadFile("assets/schemas/dnd_npc_occurrences.v1.json") if err != nil { return contracts.ArtifactSchema{} } return contracts.ArtifactSchema{ ID: SchemaID, Name: SchemaName, Version: SchemaVersion, JSONSchema: append([]byte(nil), raw...), } } func (c *Codec) MediaType() string { return MediaType } func (c *Codec) Metadata(value dnd.NPCOccurrenceList) map[string]any { return map[string]any{"occurrence_count": len(value.Occurrences)} } func (c *Codec) Encode(value dnd.NPCOccurrenceList) ([]byte, error) { if err := validate(value); err != nil { return nil, fmt.Errorf("encode dnd npc occurrence list: %w", err) } return c.EncodeCandidate(value) } // EncodeCandidate provides the durable representation before semantic // validators have approved a value. func (c *Codec) EncodeCandidate(value dnd.NPCOccurrenceList) ([]byte, error) { return candidatejson.EncodeCandidate("dnd npc occurrence list", value) } func (c *Codec) Decode(content []byte) (dnd.NPCOccurrenceList, error) { value, err := c.DecodeCandidate(content) if err != nil { return dnd.NPCOccurrenceList{}, err } if err := validate(value); err != nil { return dnd.NPCOccurrenceList{}, fmt.Errorf("decode dnd npc occurrence list: %w", err) } return value, nil } // DecodeCandidate reads one strict durable JSON value before semantic // validators have approved it. func (c *Codec) DecodeCandidate(content []byte) (dnd.NPCOccurrenceList, error) { return candidatejson.DecodeCandidate[dnd.NPCOccurrenceList]("dnd npc occurrence list", content) } func validate(value dnd.NPCOccurrenceList) error { if value.Occurrences == nil { return fmt.Errorf("occurrences must be present") } for index, occurrence := range value.Occurrences { prefix := fmt.Sprintf("occurrences[%d]", index) if strings.TrimSpace(occurrence.NPCID) == "" { return fmt.Errorf("%s.npc_id must not be empty", prefix) } if strings.TrimSpace(occurrence.Name) == "" { return fmt.Errorf("%s.name must not be empty", prefix) } if !validOccurrenceKind(occurrence.Kind) { return fmt.Errorf("%s.kind must be supported", prefix) } if len(occurrence.SourceRefs) == 0 { return fmt.Errorf("%s.source_refs must contain at least one reference", prefix) } for refIndex, ref := range occurrence.SourceRefs { refPrefix := fmt.Sprintf("%s.source_refs[%d]", prefix, refIndex) if strings.TrimSpace(ref.SourceID) == "" { return fmt.Errorf("%s.source_id must not be empty", refPrefix) } if ref.StartUnitID <= 0 { return fmt.Errorf("%s.start_unit_id must be positive", refPrefix) } if ref.EndUnitID <= 0 { return fmt.Errorf("%s.end_unit_id must be positive", refPrefix) } } } return nil } func validOccurrenceKind(value dnd.NPCOccurrenceKind) bool { switch value { case dnd.NPCOccurrenceKindMentioned, dnd.NPCOccurrenceKindNoncombatPresence, dnd.NPCOccurrenceKindDialogue, dnd.NPCOccurrenceKindCombatAlly, dnd.NPCOccurrenceKindCombatOpponent, dnd.NPCOccurrenceKindOther: return true default: return false } }