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9f9e17a82f
The special case logic for go/defer arguments in Escape.call was scattered around a bit and was somewhat inconsistently handled across different types of function calls and parameters. This CL pulls the logic out into a separate callStmt method that's used uniformly for all kinds of function calls and arguments. Fixes #31573. Change-Id: Icdcdf611754dc3fcf1af7cb52879fb4b73a7a31f Reviewed-on: https://go-review.googlesource.com/c/go/+/173019 Run-TryBot: Matthew Dempsky <mdempsky@google.com> TryBot-Result: Gobot Gobot <gobot@golang.org> Reviewed-by: Cherry Zhang <cherryyz@google.com>
50 lines
2.6 KiB
Go
50 lines
2.6 KiB
Go
// errorcheck -0 -m
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// Copyright 2019 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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func f(...*int) {} // ERROR "can inline f$"
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func g() {
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defer f() // ERROR "... argument does not escape$"
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defer f(new(int)) // ERROR "... argument does not escape$" "new\(int\) does not escape$"
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defer f(new(int), new(int)) // ERROR "... argument does not escape$" "new\(int\) does not escape$"
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defer f(nil...)
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defer f([]*int{}...) // ERROR "\[\]\*int literal does not escape$"
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defer f([]*int{new(int)}...) // ERROR "\[\]\*int literal does not escape$" "new\(int\) does not escape$"
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defer f([]*int{new(int), new(int)}...) // ERROR "\[\]\*int literal does not escape$" "new\(int\) does not escape$"
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go f() // ERROR "... argument escapes to heap$"
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go f(new(int)) // ERROR "... argument escapes to heap$" "new\(int\) escapes to heap$"
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go f(new(int), new(int)) // ERROR "... argument escapes to heap$" "new\(int\) escapes to heap$"
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go f(nil...)
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go f([]*int{}...) // ERROR "\[\]\*int literal escapes to heap$"
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go f([]*int{new(int)}...) // ERROR "\[\]\*int literal escapes to heap$" "new\(int\) escapes to heap$"
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go f([]*int{new(int), new(int)}...) // ERROR "\[\]\*int literal escapes to heap$" "new\(int\) escapes to heap$"
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for {
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defer f() // ERROR "... argument escapes to heap$"
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defer f(new(int)) // ERROR "... argument escapes to heap$" "new\(int\) escapes to heap$"
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defer f(new(int), new(int)) // ERROR "... argument escapes to heap$" "new\(int\) escapes to heap$"
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defer f(nil...)
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defer f([]*int{}...) // ERROR "\[\]\*int literal escapes to heap$"
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defer f([]*int{new(int)}...) // ERROR "\[\]\*int literal escapes to heap$" "new\(int\) escapes to heap$"
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defer f([]*int{new(int), new(int)}...) // ERROR "\[\]\*int literal escapes to heap$" "new\(int\) escapes to heap$"
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go f() // ERROR "... argument escapes to heap$"
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go f(new(int)) // ERROR "... argument escapes to heap$" "new\(int\) escapes to heap$"
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go f(new(int), new(int)) // ERROR "... argument escapes to heap$" "new\(int\) escapes to heap$"
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go f(nil...)
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go f([]*int{}...) // ERROR "\[\]\*int literal escapes to heap$"
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go f([]*int{new(int)}...) // ERROR "\[\]\*int literal escapes to heap$" "new\(int\) escapes to heap$"
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go f([]*int{new(int), new(int)}...) // ERROR "\[\]\*int literal escapes to heap$" "new\(int\) escapes to heap$"
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}
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}
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