/** * Copyright (c) 2019-2020 mol* contributors, licensed under MIT, See LICENSE file for more info. * * @author Alexander Rose */ import { Model } from '../../mol-model/structure/model'; import { Task } from '../../mol-task'; import { ModelFormat } from '../format'; import { GroFile, GroAtoms } from '../../mol-io/reader/gro/schema'; import { Column, Table } from '../../mol-data/db'; import { guessElementSymbolString } from './util'; import { MoleculeType, getMoleculeType } from '../../mol-model/structure/model/types'; import { ComponentBuilder } from './common/component'; import { getChainId } from './common/util'; import { EntityBuilder } from './common/entity'; import { BasicData, BasicSchema, createBasic } from './basic/schema'; import { createModels } from './basic/parser'; import { Trajectory } from '../../mol-model/structure'; import { ArrayTrajectory } from '../../mol-model/structure/trajectory'; function getBasic(atoms: GroAtoms, modelNum: number): BasicData { const auth_atom_id = atoms.atomName; const auth_comp_id = atoms.residueName; const entityIds = new Array(atoms.count); const asymIds = new Array(atoms.count); const seqIds = new Uint32Array(atoms.count); const ids = new Uint32Array(atoms.count); const entityBuilder = new EntityBuilder(); const componentBuilder = new ComponentBuilder(atoms.residueNumber, atoms.atomName); let currentEntityId = ''; let currentAsymIndex = 0; let currentAsymId = ''; let currentSeqId = 0; let prevMoleculeType = MoleculeType.Unknown; let prevResidueNumber = -1; for (let i = 0, il = atoms.count; i < il; ++i) { const residueNumber = atoms.residueNumber.value(i); if (residueNumber !== prevResidueNumber) { const compId = atoms.residueName.value(i); const moleculeType = getMoleculeType(componentBuilder.add(compId, i).type, compId); if (moleculeType !== prevMoleculeType || ( residueNumber !== prevResidueNumber + 1 && !( // gro format allows only for 5 character residueNumbers, handle overflow here prevResidueNumber === 99999 && residueNumber === 0 ) )) { currentAsymId = getChainId(currentAsymIndex); currentAsymIndex += 1; currentSeqId = 0; } currentEntityId = entityBuilder.getEntityId(compId, moleculeType, currentAsymId); currentSeqId += 1; prevResidueNumber = residueNumber; prevMoleculeType = moleculeType; } entityIds[i] = currentEntityId; asymIds[i] = currentAsymId; seqIds[i] = currentSeqId; ids[i] = i; } const auth_asym_id = Column.ofStringArray(asymIds); const atom_site = Table.ofPartialColumns(BasicSchema.atom_site, { auth_asym_id, auth_atom_id, auth_comp_id, auth_seq_id: atoms.residueNumber, Cartn_x: Column.ofFloatArray(Column.mapToArray(atoms.x, x => x * 10, Float32Array)), Cartn_y: Column.ofFloatArray(Column.mapToArray(atoms.y, y => y * 10, Float32Array)), Cartn_z: Column.ofFloatArray(Column.mapToArray(atoms.z, z => z * 10, Float32Array)), id: Column.ofIntArray(ids), label_asym_id: auth_asym_id, label_atom_id: auth_atom_id, label_comp_id: auth_comp_id, label_seq_id: Column.ofIntArray(seqIds), label_entity_id: Column.ofStringArray(entityIds), occupancy: Column.ofConst(1, atoms.count, Column.Schema.float), type_symbol: Column.ofStringArray(Column.mapToArray(atoms.atomName, s => guessElementSymbolString(s))), pdbx_PDB_model_num: Column.ofConst(modelNum, atoms.count, Column.Schema.int), }, atoms.count); return createBasic({ entity: entityBuilder.getEntityTable(), chem_comp: componentBuilder.getChemCompTable(), atom_site }); } // export { GroFormat }; type GroFormat = ModelFormat namespace GroFormat { export function is(x?: ModelFormat): x is GroFormat { return x?.kind === 'gro'; } export function fromGro(gro: GroFile): GroFormat { return { kind: 'gro', name: gro.structures[0].header.title, data: gro }; } } // TODO reuse static model parts when hierarchy is identical // need to pass all gro.structures as one table into createModels export function trajectoryFromGRO(gro: GroFile): Task { return Task.create('Parse GRO', async ctx => { const format = GroFormat.fromGro(gro); const models: Model[] = []; for (let i = 0, il = gro.structures.length; i < il; ++i) { const basic = getBasic(gro.structures[i].atoms, i + 1); const m = await createModels(basic, format, ctx); if (m.frameCount === 1) { models.push(m.representative); } } return new ArrayTrajectory(models); }); }