assembly-symmetry-axes.ts 6.7 KB

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  1. /**
  2. * Copyright (c) 2018 mol* contributors, licensed under MIT, See LICENSE file for more info.
  3. *
  4. * @author Alexander Rose <alexander.rose@weirdbyte.de>
  5. */
  6. import { ParamDefinition as PD } from '../../../mol-util/param-definition';
  7. import { RepresentationParamsGetter, RepresentationContext } from '../../../mol-repr/representation';
  8. import { VisualContext } from '../../../mol-repr/visual';
  9. import { ThemeRegistryContext, Theme } from '../../../mol-theme/theme';
  10. import { Structure } from '../../../mol-model/structure';
  11. import { StructureRepresentationProvider, StructureRepresentation, ComplexRepresentation, ComplexVisual } from '../../../mol-repr/structure/representation';
  12. import { AssemblySymmetry } from '../assembly-symmetry';
  13. import { Table } from '../../../mol-data/db';
  14. import { MeshBuilder } from '../../../mol-geo/geometry/mesh/mesh-builder';
  15. import { Tensor, Vec3 } from '../../../mol-math/linear-algebra';
  16. import { addSphere } from '../../../mol-geo/geometry/mesh/builder/sphere';
  17. import { addCylinder } from '../../../mol-geo/geometry/mesh/builder/cylinder';
  18. import { VisualUpdateState } from '../../../mol-repr/util';
  19. import { ComplexMeshVisual, ComplexMeshParams } from '../../../mol-repr/structure/complex-visual';
  20. import { Mesh } from '../../../mol-geo/geometry/mesh/mesh';
  21. import { EmptyLoci, createDataLoci, Loci, isDataLoci } from '../../../mol-model/loci';
  22. import { LocationIterator } from '../../../mol-geo/util/location-iterator';
  23. import { NullLocation } from '../../../mol-model/location';
  24. import { PickingId } from '../../../mol-geo/geometry/picking';
  25. import { OrderedSet, Interval } from '../../../mol-data/int';
  26. import { getSymmetrySelectParam, getAssemblyIds } from '../util';
  27. export const AssemblySymmetryAxesParams = {
  28. symmetryId: getSymmetrySelectParam(),
  29. sizeFactor: PD.Numeric(0.4, { min: 0, max: 3, step: 0.01 }),
  30. ...ComplexMeshParams,
  31. radialSegments: PD.Numeric(16, { min: 2, max: 56, step: 2 }),
  32. detail: PD.Numeric(0, { min: 0, max: 3, step: 1 }),
  33. }
  34. export type AssemblySymmetryAxesParams = typeof AssemblySymmetryAxesParams
  35. export function getAssemblySymmetryAxesParams(ctx: ThemeRegistryContext, structure: Structure) {
  36. const params = PD.clone(AssemblySymmetryAxesParams)
  37. params.symmetryId = getSymmetrySelectParam(structure)
  38. params.unitKinds.isHidden = true
  39. return params
  40. }
  41. export type AssemblySymmetryAxesRepresentation = StructureRepresentation<AssemblySymmetryAxesParams>
  42. export function AssemblySymmetryAxesRepresentation(ctx: RepresentationContext, getParams: RepresentationParamsGetter<Structure, AssemblySymmetryAxesParams>): AssemblySymmetryAxesRepresentation {
  43. return ComplexRepresentation('RCSB Assembly Symmetry Axes', ctx, getParams, AssemblySymmetryAxesVisual)
  44. }
  45. export const AssemblySymmetryAxesRepresentationProvider: StructureRepresentationProvider<AssemblySymmetryAxesParams> = {
  46. label: 'RCSB Assembly Symmetry Axes',
  47. description: 'Displays assembly symmetry axes.',
  48. factory: AssemblySymmetryAxesRepresentation,
  49. getParams: getAssemblySymmetryAxesParams,
  50. defaultValues: PD.getDefaultValues(AssemblySymmetryAxesParams),
  51. defaultColorTheme: 'uniform',
  52. defaultSizeTheme: 'uniform',
  53. isApplicable: (structure: Structure) => AssemblySymmetry.get(structure.models[0]) !== undefined
  54. }
  55. //
  56. export function AssemblySymmetryAxesVisual(materialId: number): ComplexVisual<AssemblySymmetryAxesParams> {
  57. return ComplexMeshVisual<AssemblySymmetryAxesParams>({
  58. defaultProps: PD.getDefaultValues(AssemblySymmetryAxesParams),
  59. createGeometry: createAssemblySymmetryAxesMesh,
  60. createLocationIterator,
  61. getLoci,
  62. eachLocation: eachAxisLocation,
  63. setUpdateState: (state: VisualUpdateState, newProps: PD.Values<AssemblySymmetryAxesParams>, currentProps: PD.Values<AssemblySymmetryAxesParams>) => {
  64. state.createGeometry = (
  65. newProps.sizeFactor !== currentProps.sizeFactor ||
  66. newProps.detail !== currentProps.detail ||
  67. newProps.symmetryId !== currentProps.symmetryId
  68. )
  69. }
  70. }, materialId)
  71. }
  72. function createLocationIterator(structure: Structure) {
  73. const assemblySymmetry = AssemblySymmetry.get(structure.models[0])
  74. const groupCount = assemblySymmetry ? assemblySymmetry.db.rcsb_assembly_symmetry_axis._rowCount : 0
  75. return LocationIterator(groupCount, 1, () => NullLocation)
  76. }
  77. function getLoci(pickingId: PickingId, structure: Structure, id: number) {
  78. const { objectId, groupId } = pickingId
  79. if (id === objectId) {
  80. const assemblySymmetry = AssemblySymmetry.get(structure.models[0])
  81. if (assemblySymmetry) {
  82. return createDataLoci(assemblySymmetry, 'axes', OrderedSet.ofSingleton(groupId))
  83. }
  84. }
  85. return EmptyLoci
  86. }
  87. function eachAxisLocation(loci: Loci, structure: Structure, apply: (interval: Interval) => boolean) {
  88. let changed = false
  89. if (!isDataLoci(loci) || loci.tag !== 'axes') return false
  90. const assemblySymmetry = AssemblySymmetry.get(structure.models[0])
  91. if (!assemblySymmetry || loci.data !== assemblySymmetry) return false
  92. OrderedSet.forEach(loci.indices, v => { if (apply(Interval.ofSingleton(v))) changed = true })
  93. return changed
  94. }
  95. export function createAssemblySymmetryAxesMesh(ctx: VisualContext, structure: Structure, theme: Theme, props: PD.Values<AssemblySymmetryAxesParams>, mesh?: Mesh) {
  96. const { symmetryId, sizeFactor } = props
  97. const assemblySymmetry = AssemblySymmetry.get(structure.models[0])
  98. if (!assemblySymmetry) return Mesh.createEmpty(mesh)
  99. const s = assemblySymmetry.db.rcsb_assembly_symmetry
  100. const symmetry = Table.pickRow(s, i => s.id.value(i) === symmetryId)
  101. if (!symmetry) return Mesh.createEmpty(mesh)
  102. // check if structure.units operators have symmetry.assembly_id
  103. if (!getAssemblyIds(structure.units).includes(symmetry.assembly_id)) return Mesh.createEmpty(mesh)
  104. const axes = assemblySymmetry.db.rcsb_assembly_symmetry_axis
  105. const vectorSpace = AssemblySymmetry.Schema.rcsb_assembly_symmetry_axis.start.space;
  106. const radius = 1 * sizeFactor
  107. const cylinderProps = { radiusTop: radius, radiusBottom: radius }
  108. const builderState = MeshBuilder.createState(256, 128, mesh)
  109. for (let i = 0, il = axes._rowCount; i < il; ++i) {
  110. if (axes.symmetry_id.value(i) !== symmetryId) continue
  111. const start = Tensor.toVec3(Vec3(), vectorSpace, axes.start.value(i))
  112. const end = Tensor.toVec3(Vec3(), vectorSpace, axes.end.value(i))
  113. builderState.currentGroup = i
  114. addSphere(builderState, start, radius, 2)
  115. addSphere(builderState, end, radius, 2)
  116. addCylinder(builderState, start, end, 1, cylinderProps)
  117. }
  118. return MeshBuilder.getMesh(builderState)
  119. }