Files
tinygo/testdata/localtypes.go
T
Jake Bailey 73db9776b1 testdata: add generic alias identity regressions
Add cases where same-named local aliases instantiate generic functions,
local types, and methods with float32 and float64. Record the current
collisions and incorrect results.
2026-07-13 07:33:32 +02:00

409 lines
12 KiB
Go

package main
import (
"reflect"
"unsafe"
)
type checker = func(any) bool
func siblingA() (any, checker) {
type Foo struct{ V int }
return Foo{V: 1}, func(x any) bool { _, ok := x.(Foo); return ok }
}
func siblingB() (any, checker) {
type Foo struct{ V int }
return Foo{V: 2}, func(x any) bool { _, ok := x.(Foo); return ok }
}
func nestedScopes() (any, any, any, checker, checker, checker) {
var av, bv, cv any
var ac, bc, cc checker
{
type Bar struct{ X int }
av = Bar{X: 10}
ac = func(x any) bool { _, ok := x.(Bar); return ok }
}
{
type Bar struct{ X int }
bv = Bar{X: 20}
bc = func(x any) bool { _, ok := x.(Bar); return ok }
}
{
type Bar struct{ X int }
cv = Bar{X: 30}
cc = func(x any) bool { _, ok := x.(Bar); return ok }
}
return av, bv, cv, ac, bc, cc
}
func genericWithLocals[T any]() (any, any, checker, checker) {
type UsesT struct{ V T }
type NoT struct{ V int }
var z T
return UsesT{V: z}, NoT{V: 42},
func(x any) bool { _, ok := x.(UsesT); return ok },
func(x any) bool { _, ok := x.(NoT); return ok }
}
func siblingClosures() (any, any, checker, checker) {
var av, bv any
var ac, bc checker
func() {
type C struct{ V int }
av = C{V: 1}
ac = func(x any) bool { _, ok := x.(C); return ok }
}()
func() {
type C struct{ V int }
bv = C{V: 2}
bc = func(x any) bool { _, ok := x.(C); return ok }
}()
return av, bv, ac, bc
}
func closureInGenericUsesT[T any]() (any, checker) {
var v any
var c checker
func() {
type X struct{ V T }
var z T
v = X{V: z}
c = func(x any) bool { _, ok := x.(X); return ok }
}()
return v, c
}
func closureInGenericNoT[T any]() (any, checker) {
var v any
var c checker
func() {
type X struct{ V int }
v = X{V: 7}
c = func(x any) bool { _, ok := x.(X); return ok }
}()
return v, c
}
func siblingClosuresInGeneric[T any]() (any, any, checker, checker) {
var av, bv any
var ac, bc checker
func() {
type C struct{ V T }
var z T
av = C{V: z}
ac = func(x any) bool { _, ok := x.(C); return ok }
}()
func() {
type C struct{ V T }
var z T
bv = C{V: z}
bc = func(x any) bool { _, ok := x.(C); return ok }
}()
return av, bv, ac, bc
}
func doublyNestedInGeneric[T any]() (any, checker) {
var v any
var c checker
func() {
func() {
type Y struct{ V T }
var z T
v = Y{V: z}
c = func(x any) bool { _, ok := x.(Y); return ok }
}()
}()
return v, c
}
// issue4931Item's layout depends on T, so sharing generic function
// bodies across different local T declarations is observable.
type issue4931Item[T any] struct {
_ T
Labels []int
}
func issue4931Run[T any](input <-chan issue4931Item[T]) int {
item := <-input
return len(item.Labels)
}
func issue4931A() int {
type T struct{ _ [1]any }
items := make(chan issue4931Item[T], 1)
items <- issue4931Item[T]{Labels: nil}
return issue4931Run(items)
}
func issue4931B() int {
type T struct{ _ [0]any }
items := make(chan issue4931Item[T], 1)
items <- issue4931Item[T]{Labels: nil}
return issue4931Run(items)
}
func issue4931Pair[A, B any](input <-chan issue4931Item[A]) int {
item := <-input
return len(item.Labels)
}
func issue4931PairA() int {
type T struct{ _ [1]any }
items := make(chan issue4931Item[T], 1)
items <- issue4931Item[T]{Labels: nil}
return issue4931Pair[T, int](items)
}
func issue4931PairB() int {
type T struct{ _ [0]any }
items := make(chan issue4931Item[T], 1)
items <- issue4931Item[T]{Labels: nil}
return issue4931Pair[T, int](items)
}
type issue4931Runner[T any] struct{}
func (issue4931Runner[T]) run(input <-chan issue4931Item[T]) int {
item := <-input
return len(item.Labels)
}
func issue4931MethodA() int {
type T struct{ _ [1]any }
items := make(chan issue4931Item[T], 1)
items <- issue4931Item[T]{Labels: nil}
return issue4931Runner[T]{}.run(items)
}
func issue4931MethodB() int {
type T struct{ _ [0]any }
items := make(chan issue4931Item[T], 1)
items <- issue4931Item[T]{Labels: nil}
return issue4931Runner[T]{}.run(items)
}
func expect(name string, ok bool) {
if ok {
println("ok:", name)
} else {
println("BUG:", name)
}
}
// issue5180Copy1 and issue5180CopyIgnoreNilMembers are the original
// repro from https://github.com/tinygo-org/tinygo/issues/5180. Each
// declares its own local Foo with a different field type, then uses
// reflect.New to construct a value via the runtime type and asserts it
// back. Without distinct local-type names the two Foos collide and the
// second assertion panics.
func issue5180Copy1() bool {
type Foo struct{ A int }
f1 := &Foo{}
dst := reflect.New(reflect.TypeOf(f1).Elem()).Interface()
_, ok := dst.(*Foo)
return ok
}
func issue5180CopyIgnoreNilMembers() (ok bool) {
type Foo struct{ A *int }
defer func() {
if r := recover(); r != nil {
ok = false
}
}()
f1 := &Foo{}
dst := reflect.New(reflect.TypeOf(f1).Elem()).Interface()
_, ok = dst.(*Foo)
return ok
}
func aliasSize[F float32 | float64]() int {
return 8 * int(unsafe.Sizeof(F(0)))
}
func aliasSizeCaller32() int {
type F = float32
return aliasSize[F]()
}
func aliasSizeCaller64() int {
type F = float64
return aliasSize[F]()
}
func aliasLocal[F float32 | float64]() (any, checker) {
type Local struct{ Value F }
return Local{}, func(x any) bool {
_, ok := x.(Local)
return ok
}
}
func aliasLocalCaller32() (any, checker) {
type F = float32
return aliasLocal[F]()
}
func aliasLocalCaller64() (any, checker) {
type F = float64
return aliasLocal[F]()
}
type aliasBox[F float32 | float64] struct {
Value F
}
func (b aliasBox[F]) Get() F {
return b.Value
}
func aliasBoxCaller32() bool {
type F = float32
var box any = aliasBox[F]{Value: 32}
_, ok := box.(interface{ Get() float32 })
return ok
}
func aliasBoxCaller64() bool {
type F = float64
var box any = aliasBox[F]{Value: 64}
_, ok := box.(interface{ Get() float64 })
return ok
}
type aliasMethodResult[F float32 | float64] struct {
Value F
}
type aliasMethodBox[F float32 | float64] struct {
Value F
}
func (b aliasMethodBox[F]) Get() aliasMethodResult[F] {
return aliasMethodResult[F]{Value: b.Value}
}
func aliasMethodCaller32() (any, checker) {
type F = float32
return aliasMethodBox[F]{Value: 32}, func(x any) bool {
_, ok := x.(interface {
Get() aliasMethodResult[F]
})
return ok
}
}
func aliasMethodCaller64() (any, checker) {
type F = float64
return aliasMethodBox[F]{Value: 64}, func(x any) bool {
_, ok := x.(interface {
Get() aliasMethodResult[F]
})
return ok
}
}
func main() {
expect("issue5180 TestCopy1", issue5180Copy1())
expect("issue5180 TestCopyIgnoreNilMembers", issue5180CopyIgnoreNilMembers())
// Two siblings with same-named local types are distinct.
aV, aC := siblingA()
bV, bC := siblingB()
expect("siblingA.Foo accepts own", aC(aV))
expect("siblingB.Foo accepts own", bC(bV))
expect("siblingA.Foo rejects siblingB.Foo", !aC(bV))
expect("siblingB.Foo rejects siblingA.Foo", !bC(aV))
// Three sibling-scope locals in one function are mutually distinct.
n1V, n2V, n3V, n1C, n2C, n3C := nestedScopes()
expect("nestedScopes.Bar#1 accepts own", n1C(n1V))
expect("nestedScopes.Bar#2 accepts own", n2C(n2V))
expect("nestedScopes.Bar#3 accepts own", n3C(n3V))
expect("nestedScopes.Bar#1 rejects #2", !n1C(n2V))
expect("nestedScopes.Bar#2 rejects #3", !n2C(n3V))
expect("nestedScopes.Bar#1 rejects #3", !n1C(n3V))
// Generic instantiations are distinct from each other but match
// themselves across calls.
iU, iN, iUC, iNC := genericWithLocals[int]()
sU, sN, sUC, sNC := genericWithLocals[string]()
iU2, iN2, _, _ := genericWithLocals[int]()
expect("genericWithLocals[int].UsesT accepts own", iUC(iU))
expect("genericWithLocals[int].NoT accepts own", iNC(iN))
expect("genericWithLocals[string].UsesT accepts own", sUC(sU))
expect("genericWithLocals[string].NoT accepts own", sNC(sN))
expect("genericWithLocals[int].UsesT rejects [string].UsesT", !iUC(sU))
expect("genericWithLocals[int].NoT rejects [string].NoT", !iNC(sN))
expect("genericWithLocals[string].UsesT rejects [int].UsesT", !sUC(iU))
expect("genericWithLocals[string].NoT rejects [int].NoT", !sNC(iN))
expect("genericWithLocals[int].UsesT matches across calls", iUC(iU2))
expect("genericWithLocals[int].NoT matches across calls", iNC(iN2))
// Sibling closures in a non-generic function.
scA, scB, scAC, scBC := siblingClosures()
expect("siblingClosures.C#1 accepts own", scAC(scA))
expect("siblingClosures.C#2 accepts own", scBC(scB))
expect("siblingClosures.C#1 rejects C#2", !scAC(scB))
expect("siblingClosures.C#2 rejects C#1", !scBC(scA))
// Closure inside generic function, type uses T.
cgi, cgiC := closureInGenericUsesT[int]()
cgs, cgsC := closureInGenericUsesT[string]()
expect("closureInGenericUsesT[int].X accepts own", cgiC(cgi))
expect("closureInGenericUsesT[string].X accepts own", cgsC(cgs))
expect("closureInGenericUsesT[int].X rejects [string].X", !cgiC(cgs))
expect("closureInGenericUsesT[string].X rejects [int].X", !cgsC(cgi))
// Closure inside generic function, type does not use T.
cni, cniC := closureInGenericNoT[int]()
cns, cnsC := closureInGenericNoT[string]()
expect("closureInGenericNoT[int].X accepts own", cniC(cni))
expect("closureInGenericNoT[string].X accepts own", cnsC(cns))
expect("closureInGenericNoT[int].X rejects [string].X", !cniC(cns))
expect("closureInGenericNoT[string].X rejects [int].X", !cnsC(cni))
// Sibling closures inside a generic function.
sgIA, sgIB, sgIAC, sgIBC := siblingClosuresInGeneric[int]()
sgSA, _, sgSAC, _ := siblingClosuresInGeneric[string]()
expect("siblingClosuresInGeneric[int].C#1 accepts own", sgIAC(sgIA))
expect("siblingClosuresInGeneric[int].C#2 accepts own", sgIBC(sgIB))
expect("siblingClosuresInGeneric[int].C#1 rejects C#2", !sgIAC(sgIB))
expect("siblingClosuresInGeneric[int].C#1 rejects [string].C#1", !sgIAC(sgSA))
expect("siblingClosuresInGeneric[string].C#1 rejects [int].C#1", !sgSAC(sgIA))
// Doubly-nested closure inside a generic function.
dni, dniC := doublyNestedInGeneric[int]()
dns, dnsC := doublyNestedInGeneric[string]()
expect("doublyNestedInGeneric[int].Y accepts own", dniC(dni))
expect("doublyNestedInGeneric[string].Y accepts own", dnsC(dns))
expect("doublyNestedInGeneric[int].Y rejects [string].Y", !dniC(dns))
expect("doublyNestedInGeneric[string].Y rejects [int].Y", !dnsC(dni))
// Issue 4931: generic instances with local type args must not share bodies.
println("issue4931A labels:", issue4931A())
println("issue4931B labels:", issue4931B())
println("issue4931PairA labels:", issue4931PairA())
println("issue4931PairB labels:", issue4931PairB())
println("issue4931MethodA labels:", issue4931MethodA())
println("issue4931MethodB labels:", issue4931MethodB())
expect("aliasSize[float32]==32", aliasSizeCaller32() == 32)
expect("aliasSize[float64]==64", aliasSizeCaller64() == 64)
aliasLocal32, aliasLocalCheck32 := aliasLocalCaller32()
aliasLocal64, aliasLocalCheck64 := aliasLocalCaller64()
expect("aliasLocal[float32] accepts own", aliasLocalCheck32(aliasLocal32))
expect("aliasLocal[float64] accepts own", aliasLocalCheck64(aliasLocal64))
expect("aliasLocal[float32] rejects [float64]", !aliasLocalCheck32(aliasLocal64))
expect("aliasLocal[float64] rejects [float32]", !aliasLocalCheck64(aliasLocal32))
expect("aliasBox[float32] implements Get() float32", aliasBoxCaller32())
expect("aliasBox[float64] implements Get() float64", aliasBoxCaller64())
aliasMethod32, aliasMethodCheck32 := aliasMethodCaller32()
aliasMethod64, aliasMethodCheck64 := aliasMethodCaller64()
expect("aliasMethod[float32] accepts own", aliasMethodCheck32(aliasMethod32))
expect("aliasMethod[float64] accepts own", aliasMethodCheck64(aliasMethod64))
expect("aliasMethod[float32] rejects [float64]", !aliasMethodCheck32(aliasMethod64))
expect("aliasMethod[float64] rejects [float32]", !aliasMethodCheck64(aliasMethod32))
}