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https://github.com/golang/go
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a19cf510af
Currently, "x &^ y" gets rewriten into "x & ^y" during walk. It adds unnecessary complexity to other parts, which must aware about this. Instead, we can just implement "&^" in the conversion to SSA, so "&^" can be handled like other binary operators. However, this CL does not pass toolstash-check. It seems that implements "&^" in the conversion to SSA causes registers allocation change. With the parent: obj: 00212 (.../src/runtime/complex.go:47) MOVQ X0, AX obj: 00213 (.../src/runtime/complex.go:47) BTRQ $63, AX obj: 00214 (.../src/runtime/complex.go:47) MOVQ "".n(SP), CX obj: 00215 (.../src/runtime/complex.go:47) MOVQ $-9223372036854775808, DX obj: 00216 (.../src/runtime/complex.go:47) ANDQ DX, CX obj: 00217 (.../src/runtime/complex.go:47) ORQ AX, CX With this CL: obj: 00212 (.../src/runtime/complex.go:47) MOVQ X0, AX obj: 00213 (.../src/runtime/complex.go:47) BTRQ $63, AX obj: 00214 (.../src/runtime/complex.go:47) MOVQ $-9223372036854775808, CX obj: 00215 (.../src/runtime/complex.go:47) MOVQ "".n(SP), DX obj: 00216 (.../src/runtime/complex.go:47) ANDQ CX, DX obj: 00217 (.../src/runtime/complex.go:47) ORQ AX, DX Change-Id: I80acf8496a91be4804fb7ef3df04c19baae2754c Reviewed-on: https://go-review.googlesource.com/c/go/+/264660 Trust: Cuong Manh Le <cuong.manhle.vn@gmail.com> Run-TryBot: Cuong Manh Le <cuong.manhle.vn@gmail.com> TryBot-Result: Go Bot <gobot@golang.org> Reviewed-by: Matthew Dempsky <mdempsky@google.com>
285 lines
6.1 KiB
Go
285 lines
6.1 KiB
Go
// errorcheck -0 -m -l
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// Copyright 2012 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, using compiler diagnostic flags, that bounds check elimination
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// is eliminating the correct checks.
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package foo
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var (
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s []int
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a1 [1]int
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a1k [1000]int
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a100k [100000]int
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p1 *[1]int
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p1k *[1000]int
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p100k *[100000]int
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i int
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ui uint
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i8 int8
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ui8 uint8
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i16 int16
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ui16 uint16
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i32 int32
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ui32 uint32
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i64 int64
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ui64 uint64
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)
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func main() {
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// Most things need checks.
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use(s[i])
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use(a1[i])
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use(a1k[i])
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use(a100k[i])
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use(p1[i])
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use(p1k[i])
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use(p100k[i])
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use(s[ui])
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use(a1[ui])
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use(a1k[ui])
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use(a100k[ui])
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use(p1[ui])
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use(p1k[ui])
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use(p100k[ui])
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use(s[i8])
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use(a1[i8])
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use(a1k[i8])
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use(a100k[i8])
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use(p1[i8])
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use(p1k[i8])
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use(p100k[i8])
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// Unsigned 8-bit numbers don't need checks for len >= 2⁸.
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use(s[ui8])
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use(a1[ui8])
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use(a1k[ui8]) // ERROR "index bounds check elided"
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use(a100k[ui8]) // ERROR "index bounds check elided"
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use(p1[ui8])
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use(p1k[ui8]) // ERROR "index bounds check elided"
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use(p100k[ui8]) // ERROR "index bounds check elided"
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use(s[i16])
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use(a1[i16])
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use(a1k[i16])
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use(a100k[i16])
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use(p1[i16])
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use(p1k[i16])
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use(p100k[i16])
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// Unsigned 16-bit numbers don't need checks for len >= 2¹⁶.
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use(s[ui16])
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use(a1[ui16])
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use(a1k[ui16])
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use(a100k[ui16]) // ERROR "index bounds check elided"
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use(p1[ui16])
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use(p1k[ui16])
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use(p100k[ui16]) // ERROR "index bounds check elided"
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use(s[i32])
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use(a1[i32])
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use(a1k[i32])
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use(a100k[i32])
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use(p1[i32])
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use(p1k[i32])
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use(p100k[i32])
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use(s[ui32])
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use(a1[ui32])
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use(a1k[ui32])
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use(a100k[ui32])
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use(p1[ui32])
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use(p1k[ui32])
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use(p100k[ui32])
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use(s[i64])
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use(a1[i64])
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use(a1k[i64])
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use(a100k[i64])
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use(p1[i64])
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use(p1k[i64])
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use(p100k[i64])
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use(s[ui64])
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use(a1[ui64])
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use(a1k[ui64])
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use(a100k[ui64])
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use(p1[ui64])
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use(p1k[ui64])
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use(p100k[ui64])
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// Mod truncates the maximum value to one less than the argument,
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// but signed mod can be negative, so only unsigned mod counts.
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use(s[i%999])
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use(a1[i%999])
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use(a1k[i%999])
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use(a100k[i%999])
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use(p1[i%999])
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use(p1k[i%999])
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use(p100k[i%999])
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use(s[ui%999])
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use(a1[ui%999])
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use(a1k[ui%999]) // ERROR "index bounds check elided"
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use(a100k[ui%999]) // ERROR "index bounds check elided"
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use(p1[ui%999])
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use(p1k[ui%999]) // ERROR "index bounds check elided"
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use(p100k[ui%999]) // ERROR "index bounds check elided"
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use(s[i%1000])
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use(a1[i%1000])
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use(a1k[i%1000])
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use(a100k[i%1000])
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use(p1[i%1000])
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use(p1k[i%1000])
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use(p100k[i%1000])
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use(s[ui%1000])
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use(a1[ui%1000])
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use(a1k[ui%1000]) // ERROR "index bounds check elided"
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use(a100k[ui%1000]) // ERROR "index bounds check elided"
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use(p1[ui%1000])
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use(p1k[ui%1000]) // ERROR "index bounds check elided"
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use(p100k[ui%1000]) // ERROR "index bounds check elided"
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use(s[i%1001])
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use(a1[i%1001])
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use(a1k[i%1001])
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use(a100k[i%1001])
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use(p1[i%1001])
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use(p1k[i%1001])
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use(p100k[i%1001])
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use(s[ui%1001])
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use(a1[ui%1001])
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use(a1k[ui%1001])
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use(a100k[ui%1001]) // ERROR "index bounds check elided"
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use(p1[ui%1001])
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use(p1k[ui%1001])
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use(p100k[ui%1001]) // ERROR "index bounds check elided"
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// Bitwise and truncates the maximum value to the mask value.
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// The result (for a positive mask) cannot be negative, so elision
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// applies to both signed and unsigned indexes.
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use(s[i&999])
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use(a1[i&999])
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use(a1k[i&999]) // ERROR "index bounds check elided"
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use(a100k[i&999]) // ERROR "index bounds check elided"
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use(p1[i&999])
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use(p1k[i&999]) // ERROR "index bounds check elided"
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use(p100k[i&999]) // ERROR "index bounds check elided"
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use(s[ui&999])
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use(a1[ui&999])
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use(a1k[ui&999]) // ERROR "index bounds check elided"
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use(a100k[ui&999]) // ERROR "index bounds check elided"
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use(p1[ui&999])
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use(p1k[ui&999]) // ERROR "index bounds check elided"
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use(p100k[ui&999]) // ERROR "index bounds check elided"
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use(s[i&1000])
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use(a1[i&1000])
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use(a1k[i&1000])
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use(a100k[i&1000]) // ERROR "index bounds check elided"
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use(p1[i&1000])
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use(p1k[i&1000])
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use(p100k[i&1000]) // ERROR "index bounds check elided"
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use(s[ui&1000])
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use(a1[ui&1000])
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use(a1k[ui&1000])
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use(a100k[ui&1000]) // ERROR "index bounds check elided"
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use(p1[ui&1000])
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use(p1k[ui&1000])
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use(p100k[ui&1000]) // ERROR "index bounds check elided"
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use(a1[i&^-1]) // ERROR "index bounds check elided"
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use(a1[i&^0])
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use(a1[i&^-2])
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use(a1[i&^1])
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use(a1k[i&^-1]) // ERROR "index bounds check elided"
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use(a1k[i&^0])
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use(a1k[i&^-2]) // ERROR "index bounds check elided"
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use(a1k[i&^1])
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use(a1k[i8&^0])
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use(a1k[i8&^-128]) // ERROR "index bounds check elided"
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use(a1k[ui8&^1]) // ERROR "index bounds check elided"
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use(a1k[ui16&^0xf000])
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use(a1k[ui16&^0xff00]) // ERROR "index bounds check elided"
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// Right shift cuts the effective number of bits in the index,
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// but only for unsigned (signed stays negative).
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use(s[i32>>22])
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use(a1[i32>>22])
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use(a1k[i32>>22])
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use(a100k[i32>>22])
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use(p1[i32>>22])
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use(p1k[i32>>22])
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use(p100k[i32>>22])
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use(s[ui32>>22])
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use(a1[ui32>>22])
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use(a1k[ui32>>22])
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use(a100k[ui32>>22]) // ERROR "index bounds check elided"
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use(p1[ui32>>22])
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use(p1k[ui32>>22])
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use(p100k[ui32>>22]) // ERROR "index bounds check elided"
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use(s[i32>>23])
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use(a1[i32>>23])
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use(a1k[i32>>23])
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use(a100k[i32>>23])
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use(p1[i32>>23])
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use(p1k[i32>>23])
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use(p100k[i32>>23])
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use(s[ui32>>23])
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use(a1[ui32>>23])
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use(a1k[ui32>>23]) // ERROR "index bounds check elided"
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use(a100k[ui32>>23]) // ERROR "index bounds check elided"
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use(p1[ui32>>23])
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use(p1k[ui32>>23]) // ERROR "index bounds check elided"
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use(p100k[ui32>>23]) // ERROR "index bounds check elided"
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// Division cuts the range like right shift does.
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use(s[i/1e6])
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use(a1[i/1e6])
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use(a1k[i/1e6])
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use(a100k[i/1e6])
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use(p1[i/1e6])
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use(p1k[i/1e6])
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use(p100k[i/1e6])
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use(s[ui/1e6])
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use(a1[ui/1e6])
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use(a1k[ui/1e6])
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use(p1[ui/1e6])
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use(p1k[ui/1e6])
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use(s[i/1e7])
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use(a1[i/1e7])
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use(a1k[i/1e7])
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use(a100k[i/1e7])
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use(p1[i/1e7])
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use(p1k[i/1e7])
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use(p100k[i/1e7])
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use(s[ui/1e7])
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use(a1[ui/1e7])
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use(p1[ui/1e7])
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}
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var sum int
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func use(x int) {
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sum += x
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}
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