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4ee1d542ed
sparse conditional constant propagation can discover optimization
opportunities that cannot be found by just combining constant folding
and constant propagation and dead code elimination separately.
This is a re-submit of PR#59575, which fix a broken dominance relationship caught by ssacheck
Updates https://github.com/golang/go/issues/59399
Change-Id: I57482dee38f8e80a610aed4f64295e60c38b7a47
GitHub-Last-Rev: 830016f24e
GitHub-Pull-Request: golang/go#60469
Reviewed-on: https://go-review.googlesource.com/c/go/+/498795
LUCI-TryBot-Result: Go LUCI <golang-scoped@luci-project-accounts.iam.gserviceaccount.com>
Reviewed-by: Keith Randall <khr@google.com>
Reviewed-by: Heschi Kreinick <heschi@google.com>
Reviewed-by: Keith Randall <khr@golang.org>
245 lines
4.5 KiB
Go
245 lines
4.5 KiB
Go
// asmcheck
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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 codegen
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//go:noinline
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func dummy() {}
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// Signed 64-bit compare-and-branch.
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func si64(x, y chan int64) {
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// s390x:"CGRJ\t[$](2|4), R[0-9]+, R[0-9]+, "
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for <-x < <-y {
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dummy()
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}
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// s390x:"CL?GRJ\t[$]8, R[0-9]+, R[0-9]+, "
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for <-x == <-y {
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dummy()
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}
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}
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// Signed 64-bit compare-and-branch with 8-bit immediate.
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func si64x8(doNotOptimize int64) {
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// take in doNotOptimize as an argument to avoid the loops being rewritten to count down
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// s390x:"CGIJ\t[$]12, R[0-9]+, [$]127, "
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for i := doNotOptimize; i < 128; i++ {
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dummy()
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}
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// s390x:"CGIJ\t[$]10, R[0-9]+, [$]-128, "
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for i := doNotOptimize; i > -129; i-- {
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dummy()
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}
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// s390x:"CGIJ\t[$]2, R[0-9]+, [$]127, "
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for i := doNotOptimize; i >= 128; i++ {
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dummy()
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}
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// s390x:"CGIJ\t[$]4, R[0-9]+, [$]-128, "
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for i := doNotOptimize; i <= -129; i-- {
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dummy()
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}
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}
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// Unsigned 64-bit compare-and-branch.
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func ui64(x, y chan uint64) {
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// s390x:"CLGRJ\t[$](2|4), R[0-9]+, R[0-9]+, "
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for <-x > <-y {
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dummy()
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}
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// s390x:"CL?GRJ\t[$]6, R[0-9]+, R[0-9]+, "
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for <-x != <-y {
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dummy()
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}
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}
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// Unsigned 64-bit comparison with 8-bit immediate.
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func ui64x8() {
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// s390x:"CLGIJ\t[$]4, R[0-9]+, [$]128, "
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for i := uint64(0); i < 128; i++ {
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dummy()
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}
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// s390x:"CLGIJ\t[$]12, R[0-9]+, [$]255, "
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for i := uint64(0); i < 256; i++ {
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dummy()
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}
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// s390x:"CLGIJ\t[$]2, R[0-9]+, [$]255, "
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for i := uint64(257); i >= 256; i-- {
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dummy()
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}
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// s390x:"CLGIJ\t[$]2, R[0-9]+, [$]0, "
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for i := uint64(1024); i > 0; i-- {
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dummy()
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}
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}
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// Signed 32-bit compare-and-branch.
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func si32(x, y chan int32) {
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// s390x:"CRJ\t[$](2|4), R[0-9]+, R[0-9]+, "
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for <-x < <-y {
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dummy()
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}
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// s390x:"CL?RJ\t[$]8, R[0-9]+, R[0-9]+, "
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for <-x == <-y {
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dummy()
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}
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}
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// Signed 32-bit compare-and-branch with 8-bit immediate.
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func si32x8(doNotOptimize int32) {
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// take in doNotOptimize as an argument to avoid the loops being rewritten to count down
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// s390x:"CIJ\t[$]12, R[0-9]+, [$]127, "
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for i := doNotOptimize; i < 128; i++ {
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dummy()
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}
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// s390x:"CIJ\t[$]10, R[0-9]+, [$]-128, "
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for i := doNotOptimize; i > -129; i-- {
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dummy()
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}
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// s390x:"CIJ\t[$]2, R[0-9]+, [$]127, "
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for i := doNotOptimize; i >= 128; i++ {
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dummy()
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}
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// s390x:"CIJ\t[$]4, R[0-9]+, [$]-128, "
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for i := doNotOptimize; i <= -129; i-- {
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dummy()
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}
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}
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// Unsigned 32-bit compare-and-branch.
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func ui32(x, y chan uint32) {
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// s390x:"CLRJ\t[$](2|4), R[0-9]+, R[0-9]+, "
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for <-x > <-y {
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dummy()
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}
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// s390x:"CL?RJ\t[$]6, R[0-9]+, R[0-9]+, "
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for <-x != <-y {
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dummy()
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}
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}
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// Unsigned 32-bit comparison with 8-bit immediate.
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func ui32x8() {
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// s390x:"CLIJ\t[$]4, R[0-9]+, [$]128, "
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for i := uint32(0); i < 128; i++ {
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dummy()
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}
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// s390x:"CLIJ\t[$]12, R[0-9]+, [$]255, "
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for i := uint32(0); i < 256; i++ {
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dummy()
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}
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// s390x:"CLIJ\t[$]2, R[0-9]+, [$]255, "
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for i := uint32(257); i >= 256; i-- {
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dummy()
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}
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// s390x:"CLIJ\t[$]2, R[0-9]+, [$]0, "
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for i := uint32(1024); i > 0; i-- {
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dummy()
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}
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}
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// Signed 64-bit comparison with unsigned 8-bit immediate.
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func si64xu8(x chan int64) {
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// s390x:"CLGIJ\t[$]8, R[0-9]+, [$]128, "
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for <-x == 128 {
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dummy()
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}
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// s390x:"CLGIJ\t[$]6, R[0-9]+, [$]255, "
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for <-x != 255 {
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dummy()
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}
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}
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// Signed 32-bit comparison with unsigned 8-bit immediate.
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func si32xu8(x chan int32) {
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// s390x:"CLIJ\t[$]8, R[0-9]+, [$]255, "
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for <-x == 255 {
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dummy()
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}
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// s390x:"CLIJ\t[$]6, R[0-9]+, [$]128, "
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for <-x != 128 {
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dummy()
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}
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}
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// Unsigned 64-bit comparison with signed 8-bit immediate.
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func ui64xu8(x chan uint64) {
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// s390x:"CGIJ\t[$]8, R[0-9]+, [$]-1, "
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for <-x == ^uint64(0) {
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dummy()
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}
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// s390x:"CGIJ\t[$]6, R[0-9]+, [$]-128, "
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for <-x != ^uint64(127) {
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dummy()
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}
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}
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// Unsigned 32-bit comparison with signed 8-bit immediate.
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func ui32xu8(x chan uint32) {
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// s390x:"CIJ\t[$]8, R[0-9]+, [$]-128, "
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for <-x == ^uint32(127) {
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dummy()
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}
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// s390x:"CIJ\t[$]6, R[0-9]+, [$]-1, "
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for <-x != ^uint32(0) {
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dummy()
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}
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}
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// Signed 64-bit comparison with 1/-1 to comparison with 0.
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func si64x0(x chan int64) {
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// riscv64:"BGTZ"
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for <-x >= 1 {
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dummy()
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}
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// riscv64:"BLEZ"
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for <-x < 1 {
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dummy()
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}
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// riscv64:"BLTZ"
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for <-x <= -1 {
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dummy()
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}
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// riscv64:"BGEZ"
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for <-x > -1 {
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dummy()
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}
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}
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// Unsigned 64-bit comparison with 1 to comparison with 0.
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func ui64x0(x chan uint64) {
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// riscv64:"BNEZ"
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for <-x >= 1 {
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dummy()
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}
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// riscv64:"BEQZ"
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for <-x < 1 {
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dummy()
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}
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}
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