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go/types: rename isNamed predicate to hasName
This is a clean port of CL 358621 to go/types. Change-Id: I4e858b1b70cff69b6e0e76bb8a58a70ff54990c9 Reviewed-on: https://go-review.googlesource.com/c/go/+/360755 Trust: Robert Findley <rfindley@google.com> Run-TryBot: Robert Findley <rfindley@google.com> TryBot-Result: Go Bot <gobot@golang.org> Reviewed-by: Robert Griesemer <gri@golang.org>
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@ -267,9 +267,8 @@ func (x *operand) assignableTo(check *Checker, T Type, reason *string) (bool, er
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// Vu is typed
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// x's type V and T have identical underlying types
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// and at least one of V or T is not a named type
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// and neither is a type parameter.
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if Identical(Vu, Tu) && (!isNamed(V) || !isNamed(T)) && Vp == nil && Tp == nil {
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// and at least one of V or T is not a named type.
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if Identical(Vu, Tu) && (!hasName(V) || !hasName(T)) {
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return true, 0
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}
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@ -296,10 +295,10 @@ func (x *operand) assignableTo(check *Checker, T Type, reason *string) (bool, er
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// x is a bidirectional channel value, T is a channel
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// type, x's type V and T have identical element types,
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// and at least one of V or T is not a named type
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// and at least one of V or T is not a named type.
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if Vc, ok := Vu.(*Chan); ok && Vc.dir == SendRecv {
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if Tc, ok := Tu.(*Chan); ok && Identical(Vc.elem, Tc.elem) {
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return !isNamed(V) || !isNamed(T), _InvalidChanAssign
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return !hasName(V) || !hasName(T), _InvalidChanAssign
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}
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}
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@ -8,9 +8,10 @@ package types
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import "go/token"
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// isNamed reports whether typ has a name.
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// isNamed may be called with types that are not fully set up.
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func isNamed(typ Type) bool {
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// hasName reports whether typ has a name. This includes
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// predeclared types, defined types, and type parameters.
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// hasName may be called with types that are not fully set up.
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func hasName(typ Type) bool {
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switch typ.(type) {
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case *Basic, *Named, *TypeParam:
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return true
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8
src/go/types/testdata/spec/assignability.go2
vendored
8
src/go/types/testdata/spec/assignability.go2
vendored
@ -33,8 +33,9 @@ func _[TP any](X TP) {
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X = X
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}
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// "x's type V and T have identical underlying types and at least one
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// of V or T is not a defined type and neither is a type parameter"
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// "x's type V and T have identical underlying types
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// and at least one of V or T is not a named type."
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// (here a named type is a type with a name)
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func _[TP1, TP2 Interface](X1 TP1, X2 TP2) {
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b = B // ERROR cannot use B .* as int value
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a = A
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@ -69,7 +70,8 @@ func _[TP Interface](X TP) {
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X = i // ERROR cannot use i .* as TP value
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}
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// "x is a bidirectional channel value, T is a channel type, x's type V and T have identical element types, and at least one of V or T is not a defined type"
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// "x is a bidirectional channel value, T is a channel type, x's type V and T have identical element types, and at least one of V or T is not a named type"
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// (here a named type is a type with a name)
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type (
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_SendChan = chan<- int
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_RecvChan = <-chan int
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@ -235,13 +235,13 @@ func (u *unifier) nify(x, y Type, p *ifacePair) bool {
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// If exact unification is known to fail because we attempt to
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// match a type name against an unnamed type literal, consider
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// the underlying type of the named type.
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// (Subtle: We use isNamed to include any type with a name (incl.
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// basic types and type parameters. We use asNamed() because we only
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// (Subtle: We use hasName to include any type with a name (incl.
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// basic types and type parameters. We use asNamed because we only
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// want *Named types.)
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switch {
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case !isNamed(x) && y != nil && asNamed(y) != nil:
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case !hasName(x) && y != nil && asNamed(y) != nil:
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return u.nify(x, under(y), p)
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case x != nil && asNamed(x) != nil && !isNamed(y):
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case x != nil && asNamed(x) != nil && !hasName(y):
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return u.nify(under(x), y, p)
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}
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}
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