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cmd/compile/internal/types2: handle recursive type parameter constraints
Check type constraints after the respective type parameter list has been associated with a parameterized type so that recursive type parameter constraints "see" a parameterized type. Fixes #45550. Fixes #47796. Change-Id: Iac74610ca017a78013820624230c857395506aff Reviewed-on: https://go-review.googlesource.com/c/go/+/348090 Trust: Robert Griesemer <gri@golang.org> Reviewed-by: Robert Findley <rfindley@google.com>
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@ -567,7 +567,7 @@ func (check *Checker) typeDecl(obj *TypeName, tdecl *syntax.TypeDecl, def *Named
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if tdecl.TParamList != nil {
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check.openScope(tdecl, "type parameters")
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defer check.closeScope()
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named.tparams = check.collectTypeParams(tdecl.TParamList)
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check.collectTypeParams(&named.tparams, tdecl.TParamList)
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}
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// determine underlying type of named
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@ -598,7 +598,7 @@ func (check *Checker) typeDecl(obj *TypeName, tdecl *syntax.TypeDecl, def *Named
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}
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}
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func (check *Checker) collectTypeParams(list []*syntax.Field) *TParamList {
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func (check *Checker) collectTypeParams(dst **TParamList, list []*syntax.Field) {
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tparams := make([]*TypeParam, len(list))
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// Declare type parameters up-front.
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@ -608,6 +608,11 @@ func (check *Checker) collectTypeParams(list []*syntax.Field) *TParamList {
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tparams[i] = check.declareTypeParam(f.Name)
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}
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// Set the type parameters before collecting the type constraints because
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// the parameterized type may be used by the constraints (issue #47887).
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// Example: type T[P T[P]] interface{}
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*dst = bindTParams(tparams)
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var bound Type
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for i, f := range list {
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// Optimization: Re-use the previous type bound if it hasn't changed.
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@ -618,13 +623,17 @@ func (check *Checker) collectTypeParams(list []*syntax.Field) *TParamList {
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}
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tparams[i].bound = bound
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}
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return bindTParams(tparams)
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}
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func (check *Checker) declareTypeParam(name *syntax.Name) *TypeParam {
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// Use Typ[Invalid] for the type constraint to ensure that a type
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// is present even if the actual constraint has not been assigned
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// yet.
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// TODO(gri) Need to systematically review all uses of type parameter
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// constraints to make sure we don't rely on them if they
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// are not properly set yet.
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tname := NewTypeName(name.Pos(), check.pkg, name.Value, nil)
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tpar := check.NewTypeParam(tname, nil) // assigns type to tname as a side-effect
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tpar := check.NewTypeParam(tname, Typ[Invalid]) // assigns type to tname as a side-effect
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check.declare(check.scope, name, tname, check.scope.pos) // TODO(gri) check scope position
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return tpar
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}
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@ -157,7 +157,7 @@ func (check *Checker) funcType(sig *Signature, recvPar *syntax.Field, tparams []
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}
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if tparams != nil {
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sig.tparams = check.collectTypeParams(tparams)
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check.collectTypeParams(&sig.tparams, tparams)
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// Always type-check method type parameters but complain if they are not enabled.
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// (A separate check is needed when type-checking interface method signatures because
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// they don't have a receiver specification.)
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10
src/cmd/compile/internal/types2/testdata/fixedbugs/issue45550.go2
vendored
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10
src/cmd/compile/internal/types2/testdata/fixedbugs/issue45550.go2
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@ -0,0 +1,10 @@
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// Copyright 2021 The Go Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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package p
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type Builder[T interface{ struct{ Builder[T] } }] struct{}
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type myBuilder struct {
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Builder[myBuilder /* ERROR myBuilder does not satisfy */]
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}
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33
src/cmd/compile/internal/types2/testdata/fixedbugs/issue47796.go2
vendored
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33
src/cmd/compile/internal/types2/testdata/fixedbugs/issue47796.go2
vendored
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@ -0,0 +1,33 @@
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// Copyright 2021 The Go Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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package p
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// parameterized types with self-recursive constraints
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type (
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T1[P T1[P]] interface{}
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T2[P, Q T2[P, Q]] interface{}
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T3[P T2[P, Q], Q interface{ ~string }] interface{}
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T4a[P T4a[P]] interface{ ~int }
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T4b[P T4b[int]] interface{ ~int }
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T4c[P T4c[string /* ERROR string does not satisfy T4c\[string\] */]] interface{ ~int }
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// mutually recursive constraints
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T5[P T6[P]] interface{ int }
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T6[P T5[P]] interface{ int }
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)
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// verify that constraints are checked as expected
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var (
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_ T1[int]
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_ T2[int, string]
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_ T3[int, string]
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)
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// test case from issue
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type Eq[a Eq[a]] interface {
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Equal(that a) bool
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}
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