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cmd/compile: adjust types2 shift check to match go/types (cleanup)
With this change, the shift checking code matches the corresponding go/types code, but for the differences in the internal error reporting, and call of check.overflow. The change leads to the recording of an untyped int value if the RHS of a non-constant shift is an untyped integer value. Adjust the type in the compiler's irgen accordingly. Add test/shift3.go to verify behavior. Change-Id: I20386fcb1d5c48becffdc2203081fb70c08b282d Reviewed-on: https://go-review.googlesource.com/c/go/+/398236 Trust: Robert Griesemer <gri@golang.org> Run-TryBot: Robert Griesemer <gri@golang.org> Trust: Matthew Dempsky <mdempsky@google.com> Reviewed-by: Matthew Dempsky <mdempsky@google.com> TryBot-Result: Gopher Robot <gobot@golang.org> Reviewed-by: Robert Findley <rfindley@google.com>
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@ -6,6 +6,7 @@ package noder
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import (
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"fmt"
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"go/constant"
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"cmd/compile/internal/base"
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"cmd/compile/internal/ir"
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@ -62,6 +63,14 @@ func (g *irgen) expr(expr syntax.Expr) ir.Node {
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case types2.UntypedNil:
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// ok; can appear in type switch case clauses
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// TODO(mdempsky): Handle as part of type switches instead?
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case types2.UntypedInt, types2.UntypedFloat, types2.UntypedComplex:
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// Untyped rhs of non-constant shift, e.g. x << 1.0.
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// If we have a constant value, it must be an int >= 0.
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if tv.Value != nil {
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s := constant.ToInt(tv.Value)
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assert(s.Kind() == constant.Int && constant.Sign(s) >= 0)
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}
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typ = types2.Typ[types2.Uint]
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case types2.UntypedBool:
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typ = types2.Typ[types2.Bool] // expression in "if" or "for" condition
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case types2.UntypedString:
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@ -311,6 +311,18 @@ func TestTypesInfo(t *testing.T) {
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`[][]struct{}`,
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},
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// issue 47243
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{`package issue47243_a; var x int32; var _ = x << 3`, `3`, `untyped int`},
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{`package issue47243_b; var x int32; var _ = x << 3.`, `3.`, `untyped float`},
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{`package issue47243_c; var x int32; var _ = 1 << x`, `1 << x`, `int`},
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{`package issue47243_d; var x int32; var _ = 1 << x`, `1`, `int`},
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{`package issue47243_e; var x int32; var _ = 1 << 2`, `1`, `untyped int`},
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{`package issue47243_f; var x int32; var _ = 1 << 2`, `2`, `untyped int`},
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{`package issue47243_g; var x int32; var _ = int(1) << 2`, `2`, `untyped int`},
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{`package issue47243_h; var x int32; var _ = 1 << (2 << x)`, `1`, `int`},
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{`package issue47243_i; var x int32; var _ = 1 << (2 << x)`, `(2 << x)`, `untyped int`},
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{`package issue47243_j; var x int32; var _ = 1 << (2 << x)`, `2`, `untyped int`},
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// tests for broken code that doesn't parse or type-check
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{brokenPkg + `x0; func _() { var x struct {f string}; x.f := 0 }`, `x.f`, `string`},
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{brokenPkg + `x1; func _() { var z string; type x struct {f string}; y := &x{q: z}}`, `z`, `string`},
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@ -954,32 +954,48 @@ func (check *Checker) shift(x, y *operand, e syntax.Expr, op syntax.Operator) {
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// spec: "The right operand in a shift expression must have integer type
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// or be an untyped constant representable by a value of type uint."
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// Provide a good error message for negative shift counts.
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// Check that constants are representable by uint, but do not convert them
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// (see also issue #47243).
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if y.mode == constant_ {
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// Provide a good error message for negative shift counts.
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yval := constant.ToInt(y.val) // consider -1, 1.0, but not -1.1
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if yval.Kind() == constant.Int && constant.Sign(yval) < 0 {
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check.errorf(y, invalidOp+"negative shift count %s", y)
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x.mode = invalid
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return
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}
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}
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// Caution: Check for isUntyped first because isInteger includes untyped
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// integers (was bug #43697).
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if isUntyped(y.typ) {
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check.convertUntyped(y, Typ[Uint])
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if y.mode == invalid {
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if isUntyped(y.typ) {
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// Caution: Check for representability here, rather than in the switch
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// below, because isInteger includes untyped integers (was bug #43697).
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check.representable(y, Typ[Uint])
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if y.mode == invalid {
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x.mode = invalid
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return
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}
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}
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} else {
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// Check that RHS is otherwise at least of integer type.
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switch {
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case allInteger(y.typ):
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if !allUnsigned(y.typ) && !check.allowVersion(check.pkg, 1, 13) {
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check.errorf(y, invalidOp+"signed shift count %s requires go1.13 or later", y)
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x.mode = invalid
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return
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}
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case isUntyped(y.typ):
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// This is incorrect, but preserves pre-existing behavior.
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// See also bug #47410.
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check.convertUntyped(y, Typ[Uint])
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if y.mode == invalid {
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x.mode = invalid
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return
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}
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default:
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check.errorf(y, invalidOp+"shift count %s must be integer", y)
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x.mode = invalid
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return
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}
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} else if !allInteger(y.typ) {
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check.errorf(y, invalidOp+"shift count %s must be integer", y)
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x.mode = invalid
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return
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} else if !allUnsigned(y.typ) && !check.allowVersion(check.pkg, 1, 13) {
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check.versionErrorf(y, "go1.13", invalidOp+"signed shift count %s", y)
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x.mode = invalid
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return
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}
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if x.mode == constant_ {
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33
src/cmd/compile/internal/types2/testdata/fixedbugs/issue52031.go
vendored
Normal file
33
src/cmd/compile/internal/types2/testdata/fixedbugs/issue52031.go
vendored
Normal file
@ -0,0 +1,33 @@
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// -lang=go1.12
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// Copyright 2022 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 resultFlags uint
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// Example from #52031.
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//
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// The following shifts should not produce errors on Go < 1.13, as their
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// untyped constant operands are representable by type uint.
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const (
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_ resultFlags = (1 << iota) / 2
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reportEqual
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reportUnequal
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reportByIgnore
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reportByMethod
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reportByFunc
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reportByCycle
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)
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// Invalid cases.
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var x int = 1
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var _ = (8 << x /* ERROR "signed shift count .* requires go1.13 or later" */)
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const _ = (1 << 1.2 /* ERROR "truncated to uint" */)
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var y float64
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var _ = (1 << y /* ERROR "must be integer" */)
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41
test/shift3.go
Normal file
41
test/shift3.go
Normal file
@ -0,0 +1,41 @@
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// run
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// Copyright 2022 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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// Test that the compiler's noder uses the correct type
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// for RHS shift operands that are untyped. Must compile;
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// run for good measure.
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package main
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import (
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"fmt"
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"math"
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)
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func f(x, y int) {
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if x != y {
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panic(fmt.Sprintf("%d != %d", x, y))
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}
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}
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func main() {
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var x int = 1
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f(x<<1, 2)
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f(x<<1., 2)
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f(x<<(1+0i), 2)
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f(x<<0i, 1)
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f(x<<(1<<x), 4)
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f(x<<(1.<<x), 4)
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f(x<<((1+0i)<<x), 4)
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f(x<<(0i<<x), 1)
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// corner cases
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const M = math.MaxUint
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f(x<<(M+0), 0) // shift by untyped int representable as uint
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f(x<<(M+0.), 0) // shift by untyped float representable as uint
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f(x<<(M+0.+0i), 0) // shift by untyped complex representable as uint
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}
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