"use strict"; const sql = require('../services/sql'); const eventService = require('../services/events'); const shaca = require('./shaca.js'); const sqlInit = require('../services/sql_init'); const log = require('../services/log'); const Note = require('./entities/note'); const Branch = require('./entities/branch'); const Attribute = require('./entities/attribute'); const Option = require('./entities/option'); const entityConstructor = require("../becca/entity_constructor"); function load() { const start = Date.now(); shaca.reset(); // using raw query and passing arrays to avoid allocating new objects // this is worth it for becca load since it happens every run and blocks the app until finished for (const row of sql.getRawRows(`SELECT noteId, title, type, mime, isProtected, dateCreated, dateModified, utcDateCreated, utcDateModified FROM notes WHERE isDeleted = 0`, [])) { new Note().update(row).init(); } for (const row of sql.getRawRows(`SELECT branchId, noteId, parentNoteId, prefix, notePosition, isExpanded, utcDateModified FROM branches WHERE isDeleted = 0`, [])) { new Branch().update(row).init(); } for (const row of sql.getRawRows(`SELECT attributeId, noteId, type, name, value, isInheritable, position, utcDateModified FROM attributes WHERE isDeleted = 0`, [])) { new Attribute().update(row).init(); } for (const row of sql.getRows(`SELECT name, value, isSynced, utcDateModified FROM options`)) { new Option(row); } shaca.loaded = true; log.info(`Shaca load took ${Date.now() - start}ms`); } eventService.subscribe([eventService.ENTITY_CHANGE_SYNCED], ({entityName, entityRow}) => { if (!becca.loaded) { return; } if (["notes", "branches", "attributes"].includes(entityName)) { const EntityClass = entityConstructor.getEntityFromEntityName(entityName); const primaryKeyName = EntityClass.primaryKeyName; let beccaEntity = becca.getEntity(entityName, entityRow[primaryKeyName]); if (beccaEntity) { beccaEntity.updateFromRow(entityRow); } else { beccaEntity = new EntityClass(); beccaEntity.updateFromRow(entityRow); beccaEntity.init(); } } postProcessEntityUpdate(entityName, entityRow); }); eventService.subscribe(eventService.ENTITY_CHANGED, ({entityName, entity}) => { if (!becca.loaded) { return; } postProcessEntityUpdate(entityName, entity); }); eventService.subscribe([eventService.ENTITY_DELETED, eventService.ENTITY_DELETE_SYNCED], ({entityName, entityId}) => { if (!becca.loaded) { return; } if (entityName === 'notes') { noteDeleted(entityId); } else if (entityName === 'branches') { branchDeleted(entityId); } else if (entityName === 'attributes') { attributeDeleted(entityId); } }); function noteDeleted(noteId) { delete becca.notes[noteId]; becca.dirtyNoteSetCache(); } function branchDeleted(branchId) { const branch = becca.branches[branchId]; if (!branch) { return; } const childNote = becca.notes[branch.noteId]; if (childNote) { childNote.parents = childNote.parents.filter(parent => parent.noteId !== branch.parentNoteId); childNote.parentBranches = childNote.parentBranches .filter(parentBranch => parentBranch.branchId !== branch.branchId); if (childNote.parents.length > 0) { childNote.invalidateSubTree(); } } const parentNote = becca.notes[branch.parentNoteId]; if (parentNote) { parentNote.children = parentNote.children.filter(child => child.noteId !== branch.noteId); } delete becca.childParentToBranch[`${branch.noteId}-${branch.parentNoteId}`]; delete becca.branches[branch.branchId]; } function branchUpdated(branch) { const childNote = becca.notes[branch.noteId]; if (childNote) { childNote.flatTextCache = null; childNote.resortParents(); } } function attributeDeleted(attributeId) { const attribute = becca.attributes[attributeId]; if (!attribute) { return; } const note = becca.notes[attribute.noteId]; if (note) { // first invalidate and only then remove the attribute (otherwise invalidation wouldn't be complete) if (attribute.isAffectingSubtree || note.isTemplate()) { note.invalidateSubTree(); } else { note.invalidateThisCache(); } note.ownedAttributes = note.ownedAttributes.filter(attr => attr.attributeId !== attribute.attributeId); const targetNote = attribute.targetNote; if (targetNote) { targetNote.targetRelations = targetNote.targetRelations.filter(rel => rel.attributeId !== attribute.attributeId); } } delete becca.attributes[attribute.attributeId]; const key = `${attribute.type}-${attribute.name.toLowerCase()}`; if (key in becca.attributeIndex) { becca.attributeIndex[key] = becca.attributeIndex[key].filter(attr => attr.attributeId !== attribute.attributeId); } } function attributeUpdated(attribute) { const note = becca.notes[attribute.noteId]; if (note) { if (attribute.isAffectingSubtree || note.isTemplate()) { note.invalidateSubTree(); } else { note.invalidateThisCache(); } } } function noteReorderingUpdated(branchIdList) { const parentNoteIds = new Set(); for (const branchId in branchIdList) { const branch = becca.branches[branchId]; if (branch) { branch.notePosition = branchIdList[branchId]; parentNoteIds.add(branch.parentNoteId); } } } eventService.subscribe(eventService.ENTER_PROTECTED_SESSION, () => { try { becca.decryptProtectedNotes(); } catch (e) { log.error(`Could not decrypt protected notes: ${e.message} ${e.stack}`); } }); eventService.subscribe(eventService.LEAVE_PROTECTED_SESSION, load); module.exports = { load, reload, beccaLoaded };