Files
genqlient/generate/testdata/snapshots/TestGenerate-MultipleDirectives.graphql-MultipleDirectives.graphql.go
T
Ben KraftandGitHub 3a5bf46da4 Add getter methods to all fields, not just where needed (#126)
## Summary:
If your type implements an interface, we add getter methods for the
shared fields, so that those may be accessed via the interface.  But it
turns out occasionally it's useful to have these getter methods when
they don't implement a GraphQL interface, so you can use two
genqlient-generated types in the same function if they have the same
fields.  (This comes up most often when you have a GraphQL union that
maybe should really be an interface, or if you don't yet support
interfaces implementing other interfaces (indeed our parser doesn't
either).  But one can imagine other use cases.)

We can't predict how you want to do that, so we can't generate the
interface, but we can generate the methods, so you can define the
interface and do a type assertion from there.  Since these methods are
pretty simple to generate, we just do it always.  (As with #120, if
binary size becomes an issue we could later add an option to only
generate methods that are truly needed but including them seems like the
better default.)

This also fixes a subtle and rare bug, which would have become much more
common (indeed existing tests caught it).  Specifically, if you have a
query like
```graphql
fragment FragmentOne on T { id }
fragment FragmentTwo on T { id }
query Q {
    f {   # interface type T
        ...FragmentOne
        ...FragmentTwo
    }
}
```
since both `FragmentOne` and `FragmentTwo` request some common field,
say `id`, we generate a method `GetId` on each one.  But since
`FragmentOne` and `FragmentTwo` are both on `T`, we also include their
interfaces in the interface we generate for the type of `f`, `QFT`.  So
`QFT` includes a method `GetId`.  But on the implementations, the two
methods conflict, and neither gets promoted; this causes various code to
fail to compile.  With this change, this would have happened much more
frequently -- even if only one of the two fragments is on `T`, as long
as both request the field.  Anyway, we now generate explicit methods on
each struct for all of its recursively emebedded fields -- using the
logic from #120 to compute them -- so that we don't need to rely on
method-promotion.

## Test plan:
make tesc


Author: benjaminjkraft

Reviewers: csilvers, dnerdy, aberkan, jvoll, mahtabsabet, MiguelCastillo, StevenACoffman

Required Reviewers: 

Approved By: csilvers, dnerdy

Checks:  Test (1.17),  Test (1.16),  Test (1.15),  Test (1.14),  Lint,  Test (1.17),  Test (1.16),  Test (1.15),  Test (1.14),  Lint

Pull Request URL: https://github.com/Khan/genqlient/pull/126
2021-10-01 15:02:07 -07:00

359 lines
10 KiB
Go

package test
// Code generated by github.com/Khan/genqlient, DO NOT EDIT.
import (
"encoding/json"
"fmt"
"time"
"github.com/Khan/genqlient/graphql"
"github.com/Khan/genqlient/internal/testutil"
)
// UserQueryInput is the argument to Query.users.
//
// Ideally this would support anything and everything!
// Or maybe ideally it wouldn't.
// Really I'm just talking to make this documentation longer.
type MyInput struct {
Email *string `json:"email,omitempty"`
Name *string `json:"name,omitempty"`
// id looks the user up by ID. It's a great way to look up users.
Id *testutil.ID `json:"id,omitempty"`
Role *Role `json:"role,omitempty"`
Names []*string `json:"names,omitempty"`
HasPokemon *testutil.Pokemon `json:"hasPokemon,omitempty"`
Birthdate *time.Time `json:"-"`
}
// GetEmail returns MyInput.Email, and is useful for accessing the field via an interface.
func (v *MyInput) GetEmail() *string { return v.Email }
// GetName returns MyInput.Name, and is useful for accessing the field via an interface.
func (v *MyInput) GetName() *string { return v.Name }
// GetId returns MyInput.Id, and is useful for accessing the field via an interface.
func (v *MyInput) GetId() *testutil.ID { return v.Id }
// GetRole returns MyInput.Role, and is useful for accessing the field via an interface.
func (v *MyInput) GetRole() *Role { return v.Role }
// GetNames returns MyInput.Names, and is useful for accessing the field via an interface.
func (v *MyInput) GetNames() []*string { return v.Names }
// GetHasPokemon returns MyInput.HasPokemon, and is useful for accessing the field via an interface.
func (v *MyInput) GetHasPokemon() *testutil.Pokemon { return v.HasPokemon }
// GetBirthdate returns MyInput.Birthdate, and is useful for accessing the field via an interface.
func (v *MyInput) GetBirthdate() *time.Time { return v.Birthdate }
func (v *MyInput) UnmarshalJSON(b []byte) error {
if string(b) == "null" {
return nil
}
var firstPass struct {
*MyInput
Birthdate json.RawMessage `json:"birthdate"`
graphql.NoUnmarshalJSON
}
firstPass.MyInput = v
err := json.Unmarshal(b, &firstPass)
if err != nil {
return err
}
{
dst := &v.Birthdate
src := firstPass.Birthdate
if len(src) != 0 && string(src) != "null" {
*dst = new(time.Time)
err = testutil.UnmarshalDate(
src, *dst)
if err != nil {
return fmt.Errorf(
"Unable to unmarshal MyInput.Birthdate: %w", err)
}
}
}
return nil
}
type __premarshalMyInput struct {
Email *string `json:"email"`
Name *string `json:"name"`
Id *testutil.ID `json:"id"`
Role *Role `json:"role"`
Names []*string `json:"names"`
HasPokemon *testutil.Pokemon `json:"hasPokemon"`
Birthdate json.RawMessage `json:"birthdate"`
}
func (v *MyInput) MarshalJSON() ([]byte, error) {
premarshaled, err := v.__premarshalJSON()
if err != nil {
return nil, err
}
return json.Marshal(premarshaled)
}
func (v *MyInput) __premarshalJSON() (*__premarshalMyInput, error) {
var retval __premarshalMyInput
retval.Email = v.Email
retval.Name = v.Name
retval.Id = v.Id
retval.Role = v.Role
retval.Names = v.Names
retval.HasPokemon = v.HasPokemon
{
dst := &retval.Birthdate
src := v.Birthdate
if src != nil {
var err error
*dst, err = testutil.MarshalDate(
src)
if err != nil {
return nil, fmt.Errorf(
"Unable to marshal MyInput.Birthdate: %w", err)
}
}
}
return &retval, nil
}
// MyMultipleDirectivesResponse is returned by MultipleDirectives on success.
type MyMultipleDirectivesResponse struct {
// user looks up a user by some stuff.
//
// See UserQueryInput for what stuff is supported.
// If query is null, returns the current user.
User *MyMultipleDirectivesResponseUser `json:"user"`
Users []*MyMultipleDirectivesResponseUsersUser `json:"users"`
}
// GetUser returns MyMultipleDirectivesResponse.User, and is useful for accessing the field via an interface.
func (v *MyMultipleDirectivesResponse) GetUser() *MyMultipleDirectivesResponseUser { return v.User }
// GetUsers returns MyMultipleDirectivesResponse.Users, and is useful for accessing the field via an interface.
func (v *MyMultipleDirectivesResponse) GetUsers() []*MyMultipleDirectivesResponseUsersUser {
return v.Users
}
// MyMultipleDirectivesResponseUser includes the requested fields of the GraphQL type User.
// The GraphQL type's documentation follows.
//
// A User is a user!
type MyMultipleDirectivesResponseUser struct {
// id is the user's ID.
//
// It is stable, unique, and opaque, like all good IDs.
Id *testutil.ID `json:"id"`
}
// GetId returns MyMultipleDirectivesResponseUser.Id, and is useful for accessing the field via an interface.
func (v *MyMultipleDirectivesResponseUser) GetId() *testutil.ID { return v.Id }
// MyMultipleDirectivesResponseUsersUser includes the requested fields of the GraphQL type User.
// The GraphQL type's documentation follows.
//
// A User is a user!
type MyMultipleDirectivesResponseUsersUser struct {
// id is the user's ID.
//
// It is stable, unique, and opaque, like all good IDs.
Id *testutil.ID `json:"id"`
}
// GetId returns MyMultipleDirectivesResponseUsersUser.Id, and is useful for accessing the field via an interface.
func (v *MyMultipleDirectivesResponseUsersUser) GetId() *testutil.ID { return v.Id }
// Role is a type a user may have.
type Role string
const (
// What is a student?
//
// A student is primarily a person enrolled in a school or other educational institution and who is under learning with goals of acquiring knowledge, developing professions and achieving employment at desired field. In the broader sense, a student is anyone who applies themselves to the intensive intellectual engagement with some matter necessary to master it as part of some practical affair in which such mastery is basic or decisive.
//
// (from [Wikipedia](https://en.wikipedia.org/wiki/Student))
RoleStudent Role = "STUDENT"
// Teacher is a teacher, who teaches the students.
RoleTeacher Role = "TEACHER"
)
// UserQueryInput is the argument to Query.users.
//
// Ideally this would support anything and everything!
// Or maybe ideally it wouldn't.
// Really I'm just talking to make this documentation longer.
type UserQueryInput struct {
Email *string `json:"email,omitempty"`
Name *string `json:"name,omitempty"`
// id looks the user up by ID. It's a great way to look up users.
Id *testutil.ID `json:"id,omitempty"`
Role *Role `json:"role,omitempty"`
Names []*string `json:"names,omitempty"`
HasPokemon *testutil.Pokemon `json:"hasPokemon,omitempty"`
Birthdate *time.Time `json:"-"`
}
// GetEmail returns UserQueryInput.Email, and is useful for accessing the field via an interface.
func (v *UserQueryInput) GetEmail() *string { return v.Email }
// GetName returns UserQueryInput.Name, and is useful for accessing the field via an interface.
func (v *UserQueryInput) GetName() *string { return v.Name }
// GetId returns UserQueryInput.Id, and is useful for accessing the field via an interface.
func (v *UserQueryInput) GetId() *testutil.ID { return v.Id }
// GetRole returns UserQueryInput.Role, and is useful for accessing the field via an interface.
func (v *UserQueryInput) GetRole() *Role { return v.Role }
// GetNames returns UserQueryInput.Names, and is useful for accessing the field via an interface.
func (v *UserQueryInput) GetNames() []*string { return v.Names }
// GetHasPokemon returns UserQueryInput.HasPokemon, and is useful for accessing the field via an interface.
func (v *UserQueryInput) GetHasPokemon() *testutil.Pokemon { return v.HasPokemon }
// GetBirthdate returns UserQueryInput.Birthdate, and is useful for accessing the field via an interface.
func (v *UserQueryInput) GetBirthdate() *time.Time { return v.Birthdate }
func (v *UserQueryInput) UnmarshalJSON(b []byte) error {
if string(b) == "null" {
return nil
}
var firstPass struct {
*UserQueryInput
Birthdate json.RawMessage `json:"birthdate"`
graphql.NoUnmarshalJSON
}
firstPass.UserQueryInput = v
err := json.Unmarshal(b, &firstPass)
if err != nil {
return err
}
{
dst := &v.Birthdate
src := firstPass.Birthdate
if len(src) != 0 && string(src) != "null" {
*dst = new(time.Time)
err = testutil.UnmarshalDate(
src, *dst)
if err != nil {
return fmt.Errorf(
"Unable to unmarshal UserQueryInput.Birthdate: %w", err)
}
}
}
return nil
}
type __premarshalUserQueryInput struct {
Email *string `json:"email"`
Name *string `json:"name"`
Id *testutil.ID `json:"id"`
Role *Role `json:"role"`
Names []*string `json:"names"`
HasPokemon *testutil.Pokemon `json:"hasPokemon"`
Birthdate json.RawMessage `json:"birthdate"`
}
func (v *UserQueryInput) MarshalJSON() ([]byte, error) {
premarshaled, err := v.__premarshalJSON()
if err != nil {
return nil, err
}
return json.Marshal(premarshaled)
}
func (v *UserQueryInput) __premarshalJSON() (*__premarshalUserQueryInput, error) {
var retval __premarshalUserQueryInput
retval.Email = v.Email
retval.Name = v.Name
retval.Id = v.Id
retval.Role = v.Role
retval.Names = v.Names
retval.HasPokemon = v.HasPokemon
{
dst := &retval.Birthdate
src := v.Birthdate
if src != nil {
var err error
*dst, err = testutil.MarshalDate(
src)
if err != nil {
return nil, fmt.Errorf(
"Unable to marshal UserQueryInput.Birthdate: %w", err)
}
}
}
return &retval, nil
}
// __MultipleDirectivesInput is used internally by genqlient
type __MultipleDirectivesInput struct {
Query MyInput `json:"query,omitempty"`
Queries []*UserQueryInput `json:"queries,omitempty"`
}
// GetQuery returns __MultipleDirectivesInput.Query, and is useful for accessing the field via an interface.
func (v *__MultipleDirectivesInput) GetQuery() MyInput { return v.Query }
// GetQueries returns __MultipleDirectivesInput.Queries, and is useful for accessing the field via an interface.
func (v *__MultipleDirectivesInput) GetQueries() []*UserQueryInput { return v.Queries }
func MultipleDirectives(
client graphql.Client,
query MyInput,
queries []*UserQueryInput,
) (*MyMultipleDirectivesResponse, error) {
__input := __MultipleDirectivesInput{
Query: query,
Queries: queries,
}
var err error
var retval MyMultipleDirectivesResponse
err = client.MakeRequest(
nil,
"MultipleDirectives",
`
query MultipleDirectives ($query: UserQueryInput, $queries: [UserQueryInput]) {
user(query: $query) {
id
}
users(query: $queries) {
id
}
}
`,
&retval,
&__input,
)
return &retval, err
}