2020-04-10 08:27:43 +02:00
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// Package core provides the primary API to include and use Super Graph with your own code.
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// For detailed documentation visit https://supergraph.dev
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//
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// Example usage:
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/*
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package main
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import (
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"database/sql"
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"fmt"
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"time"
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"github.com/dosco/super-graph/core"
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_ "github.com/jackc/pgx/v4/stdlib"
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)
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func main() {
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db, err := sql.Open("pgx", "postgres://postgrs:@localhost:5432/example_db")
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if err != nil {
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2020-04-24 03:24:41 +02:00
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log.Fatal(err)
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2020-04-10 08:27:43 +02:00
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}
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2020-04-24 03:21:45 +02:00
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sg, err := core.NewSuperGraph(nil, db)
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2020-04-10 08:27:43 +02:00
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if err != nil {
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2020-04-24 03:24:41 +02:00
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log.Fatal(err)
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2020-04-10 08:27:43 +02:00
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}
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query := `
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query {
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posts {
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id
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title
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}
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}`
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2020-05-27 01:41:28 +02:00
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ctx = context.WithValue(ctx, core.UserIDKey, 1)
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res, err := sg.GraphQL(ctx, query, nil)
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2020-04-10 08:27:43 +02:00
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if err != nil {
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2020-04-24 03:24:41 +02:00
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log.Fatal(err)
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2020-04-10 08:27:43 +02:00
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}
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fmt.Println(string(res.Data))
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}
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*/
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package core
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import (
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"context"
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"crypto/sha256"
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"database/sql"
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"encoding/json"
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2020-06-03 07:03:12 +02:00
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"hash/maphash"
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2020-04-11 08:45:06 +02:00
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_log "log"
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"os"
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2020-04-10 08:27:43 +02:00
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2020-04-20 05:48:49 +02:00
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"github.com/chirino/graphql"
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2020-04-10 08:27:43 +02:00
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"github.com/dosco/super-graph/core/internal/allow"
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"github.com/dosco/super-graph/core/internal/crypto"
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"github.com/dosco/super-graph/core/internal/psql"
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"github.com/dosco/super-graph/core/internal/qcode"
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)
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type contextkey int
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// Constants to set values on the context passed to the NewSuperGraph function
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const (
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// Name of the authentication provider. Eg. google, github, etc
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UserIDProviderKey contextkey = iota
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// User ID value for authenticated users
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UserIDKey
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// User role if pre-defined
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UserRoleKey
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)
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// SuperGraph struct is an instance of the Super Graph engine it holds all the required information like
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// datase schemas, relationships, etc that the GraphQL to SQL compiler would need to do it's job.
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type SuperGraph struct {
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2020-04-11 08:45:06 +02:00
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conf *Config
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db *sql.DB
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log *_log.Logger
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2020-04-23 07:42:16 +02:00
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dbinfo *psql.DBInfo
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2020-04-11 08:45:06 +02:00
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schema *psql.DBSchema
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allowList *allow.List
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encKey [32]byte
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2020-06-03 07:03:12 +02:00
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hashSeed maphash.Seed
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2020-06-10 01:06:16 +02:00
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queries map[uint64]*query
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2020-04-11 08:45:06 +02:00
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roles map[string]*Role
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getRole *sql.Stmt
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2020-06-04 00:19:07 +02:00
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rmap map[uint64]resolvFn
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2020-04-11 08:45:06 +02:00
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abacEnabled bool
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qc *qcode.Compiler
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pc *psql.Compiler
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2020-04-23 02:51:14 +02:00
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ge *graphql.Engine
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2020-04-10 08:27:43 +02:00
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}
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// NewSuperGraph creates the SuperGraph struct, this involves querying the database to learn its
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// schemas and relationships
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2020-04-11 08:45:06 +02:00
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func NewSuperGraph(conf *Config, db *sql.DB) (*SuperGraph, error) {
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2020-04-23 07:42:16 +02:00
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return newSuperGraph(conf, db, nil)
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}
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// newSuperGraph helps with writing tests and benchmarks
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func newSuperGraph(conf *Config, db *sql.DB, dbinfo *psql.DBInfo) (*SuperGraph, error) {
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if conf == nil {
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conf = &Config{}
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}
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2020-04-10 08:27:43 +02:00
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sg := &SuperGraph{
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2020-06-03 07:03:12 +02:00
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conf: conf,
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db: db,
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dbinfo: dbinfo,
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log: _log.New(os.Stdout, "", 0),
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hashSeed: maphash.MakeSeed(),
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2020-04-11 08:45:06 +02:00
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}
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if err := sg.initConfig(); err != nil {
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return nil, err
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2020-04-10 08:27:43 +02:00
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}
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if err := sg.initCompilers(); err != nil {
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return nil, err
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}
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if err := sg.initAllowList(); err != nil {
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return nil, err
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}
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if err := sg.initPrepared(); err != nil {
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return nil, err
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}
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2020-04-13 02:35:31 +02:00
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if err := sg.initResolvers(); err != nil {
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return nil, err
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}
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2020-04-23 02:51:14 +02:00
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if err := sg.initGraphQLEgine(); err != nil {
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return nil, err
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}
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2020-06-15 16:16:47 +02:00
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if conf.SecretKey != "" {
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2020-04-10 08:27:43 +02:00
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sk := sha256.Sum256([]byte(conf.SecretKey))
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conf.SecretKey = ""
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sg.encKey = sk
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} else {
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sg.encKey = crypto.NewEncryptionKey()
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}
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return sg, nil
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}
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// Result struct contains the output of the GraphQL function this includes resulting json from the
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// database query and any error information
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type Result struct {
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op qcode.QType
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name string
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sql string
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role string
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Error string `json:"message,omitempty"`
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Data json.RawMessage `json:"data,omitempty"`
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Extensions *extensions `json:"extensions,omitempty"`
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}
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// GraphQL function is called on the SuperGraph struct to convert the provided GraphQL query into an
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// SQL query and execute it on the database. In production mode prepared statements are directly used
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// and no query compiling takes places.
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//
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// In developer mode all names queries are saved into a file `allow.list` and in production mode only
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// queries from this file can be run.
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func (sg *SuperGraph) GraphQL(c context.Context, query string, vars json.RawMessage) (*Result, error) {
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2020-04-20 08:06:58 +02:00
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var res Result
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res.op = qcode.GetQType(query)
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res.name = allow.QueryName(query)
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// use the chirino/graphql library for introspection queries
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// disabled when allow list is enforced
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2020-04-21 16:03:05 +02:00
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if !sg.conf.UseAllowList && res.name == "IntrospectionQuery" {
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2020-05-01 08:20:13 +02:00
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r := sg.ge.ServeGraphQL(&graphql.Request{Query: query})
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2020-04-20 08:06:58 +02:00
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res.Data = r.Data
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2020-04-23 02:51:14 +02:00
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2020-04-21 16:03:05 +02:00
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if r.Error() != nil {
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res.Error = r.Error().Error()
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}
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2020-04-20 08:06:58 +02:00
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return &res, r.Error()
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2020-04-20 05:48:49 +02:00
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}
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2020-04-20 08:06:58 +02:00
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ct := scontext{Context: c, sg: sg, query: query, vars: vars, res: res}
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2020-04-10 08:27:43 +02:00
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if len(vars) <= 2 {
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ct.vars = nil
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}
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if keyExists(c, UserIDKey) {
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ct.role = "user"
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} else {
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ct.role = "anon"
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}
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data, err := ct.execQuery()
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if err != nil {
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return &ct.res, err
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}
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ct.res.Data = json.RawMessage(data)
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return &ct.res, nil
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}
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2020-04-21 16:03:05 +02:00
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2020-04-23 07:42:16 +02:00
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// GraphQLSchema function return the GraphQL schema for the underlying database connected
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// to this instance of Super Graph
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2020-04-21 16:03:05 +02:00
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func (sg *SuperGraph) GraphQLSchema() (string, error) {
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2020-04-23 02:51:14 +02:00
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return sg.ge.Schema.String(), nil
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2020-04-21 16:03:05 +02:00
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}
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2020-05-20 06:03:05 +02:00
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// Operation function return the operation type from the query. It uses a very fast algorithm to
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// extract the operation without having to parse the query.
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func Operation(query string) OpType {
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return OpType(qcode.GetQType(query))
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}
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// Name function return the operation name from the query. It uses a very fast algorithm to
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// extract the operation name without having to parse the query.
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func Name(query string) string {
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return allow.QueryName(query)
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}
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