300 lines
8.7 KiB
Go
300 lines
8.7 KiB
Go
package generate
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import (
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"fmt"
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"strings"
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"github.com/vektah/gqlparser/ast"
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)
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type typeBuilder struct {
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typeName string
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typeNamePrefix string
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strings.Builder
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*generator
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}
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func (g *generator) baseTypeForOperation(operation ast.Operation) *ast.Definition {
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switch operation {
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case ast.Query:
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return g.schema.Query
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case ast.Mutation:
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return g.schema.Mutation
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case ast.Subscription:
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return g.schema.Subscription
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default:
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panic(fmt.Sprintf("unexpected operation: %v", operation))
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}
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}
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func (g *generator) getTypeForOperation(operation *ast.OperationDefinition) (name string, err error) {
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// TODO: configure ResponseName format
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name = operation.Name + "Response"
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if def, ok := g.typeMap[name]; ok {
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// TODO: check for and handle conflicts a better way
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return "", fmt.Errorf("%s defined twice:\n%s", name, def)
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}
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fields, err := selections(operation.SelectionSet)
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if err != nil {
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return "", err
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}
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return g.addTypeForDefinition(
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operation.Name, name, g.baseTypeForOperation(operation.Operation), fields)
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}
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var builtinTypes = map[string]string{
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// GraphQL guarantees int32 is enough, but using int seems more idiomatic
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"Int": "int",
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"Float": "float64",
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"String": "string",
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"Boolean": "bool",
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"ID": "string",
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}
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func (g *generator) addTypeForDefinition(namePrefix, nameOverride string, typ *ast.Definition, fields []field) (name string, err error) {
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// If this is a builtin type, just refer to it.
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goName, ok := builtinTypes[typ.Name]
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if ok {
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return goName, nil
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}
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if nameOverride != "" {
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// if we have an explicit name, the passed-in prefix is what we
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// propagate forward
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name = nameOverride
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} else {
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typeGoName := upperFirst(typ.Name)
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if strings.HasSuffix(namePrefix, typeGoName) {
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// If the field and type names are the same, we can avoid the
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// duplication. (We include the field name in case there are
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// multiple fields with the same type, and the type name because
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// that's the actual name (the rest are really qualifiers); but if
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// they are the same then including it once suffices for both
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// purposes.)
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name = namePrefix
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} else {
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name = namePrefix + typeGoName
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}
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if typ.Kind != ast.Interface && typ.Kind != ast.Union {
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// for interface/union types, we do not add the type name to the
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// name prefix; we want to have QueryFieldType rather than
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// QueryFieldInterfaceType. Otherwise, the name will also be the
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// prefix for the next type.
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namePrefix = name
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}
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}
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// Otherwise, build the type, put that in the type-map, and return its
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// name.
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builder := &typeBuilder{typeName: name, typeNamePrefix: namePrefix, generator: g}
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fmt.Fprintf(builder, "type %s ", name)
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err = builder.writeTypedef(typ, fields)
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if err != nil {
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return "", err
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}
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g.typeMap[name] = builder.String()
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return name, nil
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}
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func (g *generator) getTypeForInputType(opName string, typ *ast.Type) (string, error) {
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// Sort of a hack: case the input type name to match the op-name.
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name := matchFirst(typ.Name(), opName)
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// TODO: we have to pass name 4 times, yuck
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builder := &typeBuilder{typeName: name, typeNamePrefix: name, generator: g}
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err := builder.writeType(name, name, typ, selectionsForType(g, typ))
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return builder.String(), err
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}
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type field interface {
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Alias() string
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Type() *ast.Type
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SubFields() ([]field, error)
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}
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type outputField struct{ field *ast.Field }
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func (s outputField) Alias() string {
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// gqlparser sets Alias even if the field is not aliased, see e.g.
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// https://github.com/vektah/gqlparser/blob/c06d8e0d135f285e37e7f1ff397f10e049733eb3/parser/query.go#L150
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return s.field.Alias
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}
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func (s outputField) Type() *ast.Type {
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if s.field.Definition == nil {
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return nil
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}
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return s.field.Definition.Type
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}
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func (s outputField) SubFields() ([]field, error) {
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return selections(s.field.SelectionSet)
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}
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func selections(selectionSet ast.SelectionSet) ([]field, error) {
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retval := make([]field, len(selectionSet))
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for i, selection := range selectionSet {
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switch selection := selection.(type) {
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case *ast.Field:
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retval[i] = outputField{selection}
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case *ast.FragmentSpread, *ast.InlineFragment:
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return nil, fmt.Errorf("not implemented: %T", selection)
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default:
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return nil, fmt.Errorf("invalid selection type: %v", selection)
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}
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}
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return retval, nil
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}
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type inputField struct {
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*generator
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field *ast.FieldDefinition
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}
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func (s inputField) Alias() string { return s.field.Name }
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func (s inputField) Type() *ast.Type { return s.field.Type }
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func (s inputField) SubFields() ([]field, error) {
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return selectionsForType(s.generator, s.field.Type), nil
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}
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func selectionsForType(g *generator, typ *ast.Type) []field {
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def := g.schema.Types[typ.Name()]
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fields := make([]field, len(def.Fields))
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for i, field := range def.Fields {
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fields[i] = inputField{g, field}
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}
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return fields
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}
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func (builder *typeBuilder) writeField(field field) error {
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jsonName := field.Alias()
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// We need an exportable name for JSON-marshaling.
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goName := upperFirst(jsonName)
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builder.WriteString(goName)
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builder.WriteRune(' ')
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typ := field.Type()
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if typ == nil {
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// Unclear why gqlparser hasn't already rejected this,
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// but empirically it might not.
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return fmt.Errorf("undefined field %v", field.Alias())
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}
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fields, err := field.SubFields()
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if err != nil {
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return err
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}
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err = builder.writeType(
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// Note we don't deduplicate suffixes here -- if our prefix is GetUser
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// and the field name is User, we do GetUserUser. This is important
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// because if you have a field called user on a type called User we
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// need `query q { user { user { id } } }` to generate two types, QUser
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// and QUserUser.
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// Note also this is the alias, not the field-name, because if we have
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// `query q { a: f { b }, c: f { d } }` we need separate types for a
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// and c, even though they are the same type in GraphQL, because they
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// have different fields.
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builder.typeNamePrefix+upperFirst(field.Alias()), "", typ, fields)
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if err != nil {
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return err
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}
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if builder.schema.Types[typ.Name()].IsAbstractType() {
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// abstract types are handled in our UnmarshalJSON
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builder.WriteString(" `json:\"-\"`")
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} else if jsonName != goName {
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fmt.Fprintf(builder, " `json:\"%s\"`", jsonName)
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}
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builder.WriteRune('\n')
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return nil
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}
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func (builder *typeBuilder) writeType(namePrefix, nameOverride string, typ *ast.Type, fields []field) error {
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// gqlgen does slightly different things here, but its implementation may
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// be useful to crib from:
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// https://github.com/99designs/gqlgen/blob/master/plugin/modelgen/models.go#L113
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if typ.Elem != nil {
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// Type is a list.
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builder.WriteString("[]")
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typ = typ.Elem
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}
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// TODO: allow an option to make the Go type a pointer, if you want to do
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// optionality that way, or perhaps others
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// if !typ.NonNull { builder.WriteString("*") }
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def := builder.schema.Types[typ.Name()]
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// Writes a typedef elsewhere (if not already defined)
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name, err := builder.addTypeForDefinition(namePrefix, nameOverride, def, fields)
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if err != nil {
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return err
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}
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builder.WriteString(name)
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return nil
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}
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func (builder *typeBuilder) writeTypedef(typedef *ast.Definition, fields []field) error {
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switch typedef.Kind {
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case ast.Object, ast.InputObject:
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builder.WriteString("struct {\n")
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for _, field := range fields {
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err := builder.writeField(field)
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if err != nil {
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return err
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}
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}
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builder.WriteString("}")
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// If any field is abstract, we need an UnmarshalJSON method to handle
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// it.
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return builder.maybeWriteUnmarshal(fields)
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case ast.Interface, ast.Union:
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// First, write the interface type.
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builder.WriteString("interface {\n")
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implementsMethodName := fmt.Sprintf("implementsGraphQLInterface%v", builder.typeName)
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// TODO: Also write GetX() accessor methods for fields of the interface
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builder.WriteString(implementsMethodName)
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builder.WriteString("()\n")
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builder.WriteString("}")
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// Then, write the implementations.
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// TODO(benkraft): Put a doc-comment somewhere with the list.
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for _, impldef := range builder.schema.GetPossibleTypes(typedef) {
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name, err := builder.addTypeForDefinition(builder.typeNamePrefix, "", impldef, fields)
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if err != nil {
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return err
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}
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builder.typeMap[name] += fmt.Sprintf(
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"\nfunc (v %v) %v() {}", name, implementsMethodName)
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}
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return nil
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case ast.Enum:
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// All GraphQL enums have underlying type string (in the Go sense).
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builder.WriteString("string\n")
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builder.WriteString("const (\n")
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for _, val := range typedef.EnumValues {
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fmt.Fprintf(builder, "%s %s = \"%s\"\n",
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builder.typeNamePrefix+goConstName(val.Name),
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builder.typeName, val.Name)
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}
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builder.WriteString(")\n")
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return nil
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case ast.Scalar:
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// TODO(benkraft): Handle custom scalars.
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return fmt.Errorf("not implemented: %v", typedef.Kind)
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default:
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return fmt.Errorf("unexpected kind: %v", typedef.Kind)
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}
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}
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