00f27609f0
This PR is addressing the behavior described in #151. The former version of `for` directive example usage ended in: ``` genqlient.graphql:<line>: for is only applicable to operations and arguments ``` I have: - [x] Written a clear PR title and description (above) - [x] Signed the [Khan Academy CLA](https://www.khanacademy.org/r/cla) - [x] Added tests covering my changes, if applicable - [x] Included a link to the issue fixed, if applicable - [x] Included documentation, for new features - [x] Added an entry to the changelog Signed-off-by: Matúš Bafrnec <matus.bafrnec@gmail.com>
248 lines
9.5 KiB
GraphQL
248 lines
9.5 KiB
GraphQL
# The quasi-directive @genqlient is used to configure genqlient on a
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# query-by-query basis.
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#
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# The syntax of the directive is just like a GraphQL directive (as defined
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# below), except it goes in a comment on the line immediately preceding the
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# field. (This is because GraphQL expects directives in queries to be defined
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# by the server, not by the client, so it would reject a real @genqlient
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# directive as nonexistent.)
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#
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# Directives may be applied to fields, arguments, or the entire query or named
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# fragment. Directives on the line preceding the query or a named fragment
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# apply to all relevant nodes in the query; other directives apply to all nodes
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# on the following line. (In all cases it's fine for there to be other
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# comments in between the directive and the node(s) to which it applies.) For
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# example, in the following query:
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# # @genqlient(n: "a")
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#
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# # @genqlient(n: "b")
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# #
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# # Comment describing the query
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# #
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# # @genqlient(n: "c")
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# query MyQuery(arg1: String,
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# # @genqlient(n: "d")
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# arg2: String, arg3: MyInput,
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# arg4: String,
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# ) {
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# # @genqlient(n: "e")
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# field1, field2
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# # @genqlient(n: "f")
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# field3 {
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# field4
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# }
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# }
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# the directive "a" is ignored, "b" and "c" apply to all relevant nodes in the
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# query, "d" applies to arg2 and arg3, "e" applies to field1 and field2, and
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# "f" applies to field3.
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#
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# Except as noted below, directives on nodes take precedence over ones on the
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# entire query (so "d", "e", and "f" take precedence over "b" and "c"), and
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# multiple directives on the same node ("b" and "c") must not conflict. Note
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# that directives on nodes do *not* apply to their "children", so "d" does not
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# apply to the fields of MyInput, and "f" does not apply to field4. (But
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# directives on operations and fragments do: both "b" and "c" apply to fields
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# of MyInput and to field4.)
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directive genqlient(
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# If set to a string "MyType.myField", this entire @genqlient directive
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# will be treated as if it were applied to the specified field of the
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# specified type. It must be applied to an entire operation or fragment.
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#
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# This is especially useful for input-type options like omitempty and
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# pointer, which are equally meaningful on input-type fields as on arguments,
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# but there's no natural syntax to put them on fields.
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#
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# Note that for input types, unless the type has the "typename" option set,
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# all operations and fragments in the same package which use this type should
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# have matching directives. (This is to avoid needing to give them more
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# complex type-names.) This is not currently validated, but will be
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# validated in the future (see issue #123).
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#
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# For example, given the following query:
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# # @genqlient(for: "MyInput.myField", omitempty: true)
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# # @genqlient(for: "MyInput.myOtherField", pointer: true)
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# # @genqlient(for: "MyOutput.id", bind: "path/to/pkg.MyOutputID")
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# query MyQuery(
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# $arg: MyInput
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# ) { ... }
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# genqlient will generate a type
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# type MyInput struct {
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# MyField <type> `json:"myField,omitempty"`
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# MyOtherField *<type> `json:"myField"`
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# MyThirdField <type> `json:"myThirdField"`
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# }
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# and use it for the argument to MyQuery, and similarly if `MyOutput.id` is
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# ever requested in the response, it will be set to use the given type.
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for: String
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# If set, this argument (or input-type field, see "for") will be omitted if
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# it has an empty value, defined (the same as in encoding/json) as false, 0,
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# a nil pointer, a nil interface value, and any empty array, slice, map, or
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# string.
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#
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# For example, given the following query:
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# # @genqlient(omitempty: true)
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# query MyQuery($arg: String) { ... }
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# genqlient will generate a function
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# MyQuery(ctx context.Context, client graphql.Client, arg string) ...
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# which will pass {"arg": null} to GraphQL if arg is "", and the actual
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# value otherwise.
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#
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# Only applicable to arguments of nullable types. Ignored for types with
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# custom marshalers (see their documentation in genqlient.yaml for details).
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omitempty: Boolean
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# If set, this argument or field will use a pointer type in Go. Response
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# types always use pointers, but otherwise we typically do not.
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#
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# This can be useful if it's a type you'll need to pass around (and want a
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# pointer to save copies) or if you wish to distinguish between the Go
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# zero value and null (for nullable fields).
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pointer: Boolean
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# If set, this field will use a struct type in Go, even if it's an interface.
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#
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# This is useful when you have a query like
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# query MyQuery {
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# myInterface { myField }
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# }
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# where you are requesting only shared fields of an interface. By default,
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# genqlient still generates an interface type, for consistency. But this
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# isn't necessary: a struct would do just fine since there are no
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# type-specific fields. Setting `struct: true` tells genqlient to do that.
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#
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# Note that this is only allowed when there are no fragments in play, such
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# that all fields are on the interface type. Note that if you later add a
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# fragment, you'll have to remove this option, and the types will change.
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struct: Boolean
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# If set, this field's selection must contain a single fragment-spread; we'll
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# use the type of that fragment-spread as the type of the field.
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#
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# For example, given a query like
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# query MyQuery {
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# myField {
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# ...MyFragment
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# }
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# }
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# by default genqlient will generate these types:
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# type MyQueryResponse struct {
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# MyField MyQueryMyFieldMyType
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# }
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# type MyQueryMyFieldMyType struct {
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# MyFragment
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# }
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# If we instead do:
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# query MyQuery {
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# # @genqlient(flatten: true)
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# myField {
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# ...MyFragment
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# }
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# }
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# genqlient will simplify things:
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# type MyQueryResponse struct {
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# MyField MyFragment
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# }
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#
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# This is only applicable to fields whose selection is a single
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# fragment-spread, such that the field-type implements the fragment-type
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# (i.e. we can't do this if MyFragment is on one implementation of the type
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# of MyField; what if we got back the other type?).
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flatten: Boolean
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# If set, this argument or field will use the given Go type instead of a
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# genqlient-generated type.
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#
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# The value should be the fully-qualified type name to use for the field,
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# for example:
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# time.Time
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# map[string]interface{}
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# []github.com/you/yourpkg/subpkg.MyType
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# Note that the type is the type of the whole field, e.g. if your field in
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# GraphQL has type `[DateTime]`, you'd do
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# # @genqlient(bind: "[]time.Time")
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# (But you're not required to; if you want to map to some type DateList,
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# you can do that, as long as its UnmarshalJSON method can accept a list
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# of datetimes.)
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#
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# Note that the type you bind to must be defined elsewhere in your code.
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# If you want genqlient to create the type definition, use "typename"
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# instead.
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#
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# See bindings in genqlient.yaml for more details; this is effectively to a
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# local version of that global setting and should be used with similar care.
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# If set to "-", overrides any such global setting and uses a
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# genqlient-generated type.
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bind: String
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# If set, the type of this field will have the given name in Go.
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#
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# For example, given the following query:
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# # @genqlient(typename: "MyResp")
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# query MyQuery {
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# # @genqlient(typename: "User")
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# user {
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# id
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# }
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# }
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# genqlient will generate
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# type Resp struct {
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# User User
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# }
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# type User struct {
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# Id string
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# }
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# instead of its usual, more verbose type names.
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#
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# You may also use "typename" on basic types, and Go will create a
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# type definition for that basic type. For instance:
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# query MyQuery {
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# user {
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# # @genqlient(typename: "NameType")
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# name
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# }
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# }
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# will cause gnqlient to generate:
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# type Resp struct {
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# User User
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# }
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# type NameType string
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# type User struct {
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# Name NameType
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# }
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# (Compare this to @genqlient(bind: "path/to/pkg.NameType"), which does
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# something similar but depends on "NameType" being defined in some
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# other package, rather than having genqlient define it for you.)
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#
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# With great power comes great responsibility: when using typename you'll
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# need to avoid comments; genqlient will complain if you use the same
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# type-name in multiple places unless they request the exact same fields, or
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# if your type-name conflicts with an autogenerated one (again, unless they
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# request the exact same fields). They must even have the fields in the
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# same order. They should also have matching @genqlient directives, although
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# this is not currently validated (see issue #123). Fragments are often
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# easier to use (see the discussion of code-sharing in FAQ.md, and the
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# "flatten" option above).
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#
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# Note that unlike most directives, if applied to the entire operation,
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# typename affects the overall response type, rather than being propagated
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# down to all child fields (which would cause conflicts).
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#
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# To avoid confusion, typename may not be combined with local or global
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# bindings; to use typename instead of a global binding do
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# `typename: "MyTypeName", bind: "-"`.
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typename: String
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# Multiple genqlient directives are allowed in the same location, as long as
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# they don't have conflicting options.
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) repeatable on
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# genqlient directives can go almost anywhere, although some options are only
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# applicable in certain locations as described above.
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| QUERY
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| MUTATION
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| SUBSCRIPTION
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| FIELD
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| FRAGMENT_DEFINITION
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| VARIABLE_DEFINITION
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