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budibase/packages/server/src/api/controllers/row/ExternalRequest.ts

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import {
IncludeRelationships,
Operation,
PaginationJson,
RelationshipsJson,
SearchFilters,
SortJson,
} from "../../../definitions/datasource"
import {Datasource, FieldSchema, Row, Table} from "../../../definitions/common"
import {breakRowIdField, generateRowIdField} from "../../../integrations/utils"
import { RelationshipTypes } from "../../../constants"
interface ManyRelationship {
tableId?: string
id?: string
isUpdate?: boolean
key: string
[key: string]: any
}
interface RunConfig {
id?: string
filters?: SearchFilters
sort?: SortJson
paginate?: PaginationJson
row?: Row
}
module External {
const { makeExternalQuery } = require("./utils")
const { DataSourceOperation, FieldTypes } = require("../../../constants")
const { breakExternalTableId, isSQL } = require("../../../integrations/utils")
const { processObjectSync } = require("@budibase/string-templates")
const { cloneDeep } = require("lodash/fp")
const CouchDB = require("../../../db")
function buildFilters(
id: string | undefined,
filters: SearchFilters,
table: Table
) {
const primary = table.primary
// if passed in array need to copy for shifting etc
let idCopy = cloneDeep(id)
if (filters) {
// need to map over the filters and make sure the _id field isn't present
for (let filter of Object.values(filters)) {
if (filter._id && primary) {
const parts = breakRowIdField(filter._id)
for (let field of primary) {
filter[field] = parts.shift()
}
}
// make sure this field doesn't exist on any filter
delete filter._id
}
}
// there is no id, just use the user provided filters
if (!idCopy || !table) {
return filters
}
// if used as URL parameter it will have been joined
if (!Array.isArray(idCopy)) {
idCopy = breakRowIdField(idCopy)
}
const equal: any = {}
if (primary && idCopy) {
for (let field of primary) {
// work through the ID and get the parts
equal[field] = idCopy.shift()
}
}
return {
equal,
}
}
function generateIdForRow(row: Row | undefined, table: Table): string {
const primary = table.primary
if (!row || !primary) {
return ""
}
// build id array
let idParts = []
for (let field of primary) {
// need to handle table name + field or just field, depending on if relationships used
const fieldValue = row[`${table.name}.${field}`] || row[field]
if (fieldValue) {
idParts.push(fieldValue)
}
}
if (idParts.length === 0) {
return ""
}
return generateRowIdField(idParts)
}
function getEndpoint(tableId: string | undefined, operation: string) {
if (!tableId) {
return {}
}
const { datasourceId, tableName } = breakExternalTableId(tableId)
return {
datasourceId,
entityId: tableName,
operation,
}
}
function basicProcessing(row: Row, table: Table) {
const thisRow: { [key: string]: any } = {}
// filter the row down to what is actually the row (not joined)
for (let fieldName of Object.keys(table.schema)) {
const value = row[`${table.name}.${fieldName}`] || row[fieldName]
// all responses include "select col as table.col" so that overlaps are handled
if (value) {
thisRow[fieldName] = value
}
}
thisRow._id = generateIdForRow(row, table)
thisRow.tableId = table._id
thisRow._rev = "rev"
return thisRow
}
function isMany(field: FieldSchema) {
return (
field.relationshipType && field.relationshipType.split("-")[0] === "many"
)
}
class ExternalRequest {
private readonly appId: string
private operation: Operation
private tableId: string
private datasource: Datasource
private tables: { [key: string]: Table } = {}
constructor(
appId: string,
operation: Operation,
tableId: string,
datasource: Datasource
) {
this.appId = appId
this.operation = operation
this.tableId = tableId
this.datasource = datasource
if (datasource && datasource.entities) {
this.tables = datasource.entities
}
}
getTable(tableId: string | undefined): Table {
if (!tableId) {
throw "Table ID is unknown, cannot find table"
}
const { tableName } = breakExternalTableId(tableId)
return this.tables[tableName]
}
inputProcessing(row: Row | undefined, table: Table) {
if (!row) {
return { row, manyRelationships: [] }
}
// we don't really support composite keys for relationships, this is why [0] is used
// @ts-ignore
const tablePrimary: string = table.primary[0]
let newRow: Row = {},
manyRelationships: ManyRelationship[] = []
for (let [key, field] of Object.entries(table.schema)) {
// if set already, or not set just skip it
if (!row[key] || newRow[key] || field.autocolumn) {
continue
}
// parse floats/numbers
if (field.type === FieldTypes.NUMBER && !isNaN(parseFloat(row[key]))) {
newRow[key] = parseFloat(row[key])
}
// if its not a link then just copy it over
if (field.type !== FieldTypes.LINK) {
newRow[key] = row[key]
continue
}
const { tableName: linkTableName } = breakExternalTableId(field.tableId)
// table has to exist for many to many
if (!this.tables[linkTableName]) {
continue
}
const linkTable = this.tables[linkTableName]
// @ts-ignore
const linkTablePrimary = linkTable.primary[0]
if (!isMany(field)) {
newRow[field.foreignKey || linkTablePrimary] = breakRowIdField(
row[key][0]
)[0]
} else {
// we're not inserting a doc, will be a bunch of update calls
const isUpdate = !field.through
const thisKey: string = isUpdate ? "id" : linkTablePrimary
// @ts-ignore
const otherKey: string = isUpdate ? field.fieldName : tablePrimary
row[key].map((relationship: any) => {
// we don't really support composite keys for relationships, this is why [0] is used
manyRelationships.push({
tableId: field.through || field.tableId,
isUpdate,
key: otherKey,
[thisKey]: breakRowIdField(relationship)[0],
// leave the ID for enrichment later
[otherKey]: `{{ literal ${tablePrimary} }}`,
})
})
}
}
// we return the relationships that may need to be created in the through table
// we do this so that if the ID is generated by the DB it can be inserted
// after the fact
return { row: newRow, manyRelationships }
}
/**
* This iterates through the returned rows and works out what elements of the rows
* actually match up to another row (based on primary keys) - this is pretty specific
* to SQL and the way that SQL relationships are returned based on joins.
*/
updateRelationshipColumns(
row: Row,
rows: { [key: string]: Row },
relationships: RelationshipsJson[]
) {
const columns: { [key: string]: any } = {}
for (let relationship of relationships) {
const linkedTable = this.tables[relationship.tableName]
if (!linkedTable) {
continue
}
let linked = basicProcessing(row, linkedTable)
if (!linked._id) {
continue
}
// if not returning full docs then get the minimal links out
const display = linkedTable.primaryDisplay
linked = {
primaryDisplay: display ? linked[display] : undefined,
_id: linked._id,
}
columns[relationship.column] = linked
}
for (let [column, related] of Object.entries(columns)) {
if (!row._id) {
continue
}
const rowId: string = row._id
if (!Array.isArray(rows[rowId][column])) {
rows[rowId][column] = []
}
// make sure relationship hasn't been found already
if (
!rows[rowId][column].find(
(relation: Row) => relation._id === related._id
)
) {
rows[rowId][column].push(related)
}
}
return rows
}
outputProcessing(
rows: Row[],
table: Table,
relationships: RelationshipsJson[]
) {
if (rows[0].read === true) {
return []
}
let finalRows: { [key: string]: Row } = {}
for (let row of rows) {
const rowId = generateIdForRow(row, table)
row._id = rowId
// this is a relationship of some sort
if (finalRows[rowId]) {
finalRows = this.updateRelationshipColumns(
row,
finalRows,
relationships
)
continue
}
const thisRow = basicProcessing(row, table)
finalRows[thisRow._id] = thisRow
// do this at end once its been added to the final rows
finalRows = this.updateRelationshipColumns(
row,
finalRows,
relationships
)
}
return Object.values(finalRows)
}
/**
* Gets the list of relationship JSON structures based on the columns in the table,
* this will be used by the underlying library to build whatever relationship mechanism
* it has (e.g. SQL joins).
*/
buildRelationships(table: Table): RelationshipsJson[] {
const relationships = []
for (let [fieldName, field] of Object.entries(table.schema)) {
if (field.type !== FieldTypes.LINK) {
continue
}
const { tableName: linkTableName } = breakExternalTableId(field.tableId)
// no table to link to, this is not a valid relationships
if (!this.tables[linkTableName]) {
continue
}
const linkTable = this.tables[linkTableName]
if (!table.primary || !linkTable.primary) {
continue
}
const definition = {
// if no foreign key specified then use the name of the field in other table
from: field.foreignKey || table.primary[0],
to: field.fieldName,
tableName: linkTableName,
through: undefined,
// need to specify where to put this back into
column: fieldName,
}
if (field.through) {
const { tableName: throughTableName } = breakExternalTableId(
field.through
)
definition.through = throughTableName
// don't support composite keys for relationships
definition.from = table.primary[0]
definition.to = linkTable.primary[0]
}
relationships.push(definition)
}
return relationships
}
/**
* This is a cached lookup, of relationship records, this is mainly for creating/deleting junction
* information.
*/
async lookupRelations(tableId: string, row: Row) {
const related: {[key: string]: any} = {}
const { tableName } = breakExternalTableId(tableId)
const table = this.tables[tableName]
// @ts-ignore
const primaryKey = table.primary[0]
// make a new request to get the row with all its relationships
// we need this to work out if any relationships need removed
for (let field of Object.values(table.schema)) {
if (field.type !== FieldTypes.LINK || !field.fieldName) {
continue
}
const isMany = field.relationshipType === RelationshipTypes.MANY_TO_MANY
const tableId = isMany ? field.through : field.tableId
const fieldName = isMany ? primaryKey : field.fieldName
const response = await makeExternalQuery(this.appId, {
endpoint: getEndpoint(tableId, DataSourceOperation.READ),
filters: {
equal: {
[fieldName]: row[primaryKey],
},
},
})
// this is the response from knex if no rows found
const rows = !response[0].read ? response : []
related[fieldName] = { rows, isMany, tableId }
}
return related
}
/**
* Once a row has been written we may need to update a many field, e.g. updating foreign keys
* in a bunch of rows in another table, or inserting/deleting rows from a junction table (many to many).
* This is quite a complex process and is handled by this function, there are a few things going on here:
* 1. If updating foreign keys its relatively simple, just create a filter for the row that needs updated
* and write the various components.
* 2. If junction table, then we lookup what exists already, write what doesn't exist, work out what
* isn't supposed to exist anymore and delete those. This is better than the usual method of delete them
* all and then re-create, as theres no chance of losing data (e.g. delete succeed, but write fail).
*/
async handleManyRelationships(mainTableId: string, row: Row, relationships: ManyRelationship[]) {
const { appId } = this
// if we're creating (in a through table) need to wipe the existing ones first
const promises = []
const related = await this.lookupRelations(mainTableId, row)
for (let relationship of relationships) {
const { key, tableId, isUpdate, id, ...rest } = relationship
const body = processObjectSync(rest, row)
const linkTable = this.getTable(tableId)
// @ts-ignore
const linkPrimary = linkTable.primary[0]
const rows = related[key].rows || []
const found = rows.find((row: { [key: string]: any }) =>
row[linkPrimary] === relationship.id || row[linkPrimary] === body[linkPrimary]
)
2021-07-03 05:44:01 +12:00
const operation = isUpdate
? DataSourceOperation.UPDATE
: DataSourceOperation.CREATE
if (!found) {
promises.push(
makeExternalQuery(appId, {
endpoint: getEndpoint(tableId, operation),
// if we're doing many relationships then we're writing, only one response
body,
filters: buildFilters(id, {}, linkTable),
})
)
} else {
// remove the relationship from cache so it isn't adjusted again
rows.splice(rows.indexOf(found), 1)
}
}
// finally cleanup anything that needs to be removed
for (let [colName, {isMany, rows, tableId}] of Object.entries(related)) {
const table = this.getTable(tableId)
for (let row of rows) {
const filters = buildFilters(generateIdForRow(row, table), {}, table)
// safety check, if there are no filters on deletion bad things happen
if (Object.keys(filters).length !== 0) {
const op = isMany ? DataSourceOperation.DELETE : DataSourceOperation.UPDATE
const body = isMany ? null : { [colName]: null }
promises.push(
makeExternalQuery(this.appId, {
endpoint: getEndpoint(tableId, op),
body,
filters,
})
)
}
}
}
await Promise.all(promises)
}
/**
* This function is a bit crazy, but the exact purpose of it is to protect against the scenario in which
* you have column overlap in relationships, e.g. we join a few different tables and they all have the
* concept of an ID, but for some of them it will be null (if they say don't have a relationship).
* Creating the specific list of fields that we desire, and excluding the ones that are no use to us
* is more performant and has the added benefit of protecting against this scenario.
*/
buildFields(table: Table, includeRelations: IncludeRelationships = IncludeRelationships.INCLUDE) {
function extractNonLinkFieldNames(table: Table, existing: string[] = []) {
return Object.entries(table.schema)
.filter(
column =>
column[1].type !== FieldTypes.LINK &&
!existing.find((field: string) => field === column[0])
)
.map(column => `${table.name}.${column[0]}`)
}
let fields = extractNonLinkFieldNames(table)
for (let field of Object.values(table.schema)) {
if (field.type !== FieldTypes.LINK || !includeRelations) {
continue
}
const { tableName: linkTableName } = breakExternalTableId(field.tableId)
const linkTable = this.tables[linkTableName]
if (linkTable) {
const linkedFields = extractNonLinkFieldNames(linkTable, fields)
fields = fields.concat(linkedFields)
}
}
return fields
}
async run({ id, row, filters, sort, paginate }: RunConfig) {
const { appId, operation, tableId } = this
let { datasourceId, tableName } = breakExternalTableId(tableId)
if (!this.datasource) {
const db = new CouchDB(appId)
this.datasource = await db.get(datasourceId)
if (!this.datasource || !this.datasource.entities) {
throw "No tables found, fetch tables before query."
}
this.tables = this.datasource.entities
}
const table = this.tables[tableName]
let isSql = isSQL(this.datasource)
if (!table) {
throw `Unable to process query, table "${tableName}" not defined.`
}
// clean up row on ingress using schema
filters = buildFilters(id, filters || {}, table)
const relationships = this.buildRelationships(table)
const processed = this.inputProcessing(row, table)
row = processed.row
if (
operation === DataSourceOperation.DELETE &&
(filters == null || Object.keys(filters).length === 0)
) {
throw "Deletion must be filtered"
}
let json = {
endpoint: {
datasourceId,
entityId: tableName,
operation,
},
resource: {
// have to specify the fields to avoid column overlap (for SQL)
fields: isSql ? this.buildFields(table) : [],
},
filters,
sort,
paginate,
relationships,
body: row,
// pass an id filter into extra, purely for mysql/returning
extra: {
idFilter: buildFilters(id || generateIdForRow(row, table), {}, table),
},
}
// can't really use response right now
const response = await makeExternalQuery(appId, json)
// handle many to many relationships now if we know the ID (could be auto increment)
if (operation !== DataSourceOperation.READ && processed.manyRelationships) {
await this.handleManyRelationships(
table._id || "",
response[0],
processed.manyRelationships
)
}
const output = this.outputProcessing(response, table, relationships)
// if reading it'll just be an array of rows, return whole thing
return operation === DataSourceOperation.READ && Array.isArray(response)
? output
: { row: output[0], table }
}
}
module.exports = ExternalRequest
}