blob: f96880d0237a3e2f520f1a980e41f701ef428fa4 [file] [log] [blame]
; RUN: llc -O3 -disable-peephole -mtriple=x86_64-unknown-unknown < %s | FileCheck %s
target datalayout = "e-m:e-i64:64-f80:128-n8:16:32:64-S128"
target triple = "x86_64-unknown-unknown"
; Stack reload folding tests.
;
; By including a nop call with sideeffects we can force a partial register spill of the
; relevant registers and check that the reload is correctly folded into the instruction.
;TODO stack_fold_bsf_i16
declare i16 @llvm.cttz.i16(i16, i1)
define i32 @stack_fold_bsf_i32(i32 %a0) {
;CHECK-LABEL: stack_fold_bsf_i32
;CHECK: bsfl {{-?[0-9]*}}(%rsp), %eax {{.*#+}} 4-byte Folded Reload
%1 = tail call i64 asm sideeffect "nop", "=x,~{rax},~{rbx},~{rcx},~{rdx},~{rsi},~{rdi},~{rbp},~{r8},~{r9},~{r10},~{r11},~{r12},~{r13},~{r14},~{r15}"()
%2 = call i32 @llvm.cttz.i32(i32 %a0, i1 -1)
ret i32 %2
}
declare i32 @llvm.cttz.i32(i32, i1)
define i64 @stack_fold_bsf_i64(i64 %a0) {
;CHECK-LABEL: stack_fold_bsf_i64
;CHECK: bsfq {{-?[0-9]*}}(%rsp), %rax {{.*#+}} 8-byte Folded Reload
%1 = tail call i64 asm sideeffect "nop", "=x,~{rax},~{rbx},~{rcx},~{rdx},~{rsi},~{rdi},~{rbp},~{r8},~{r9},~{r10},~{r11},~{r12},~{r13},~{r14},~{r15}"()
%2 = call i64 @llvm.cttz.i64(i64 %a0, i1 -1)
ret i64 %2
}
declare i64 @llvm.cttz.i64(i64, i1)
;TODO stack_fold_bsr_i16
declare i16 @llvm.ctlz.i16(i16, i1)
define i32 @stack_fold_bsr_i32(i32 %a0) {
;CHECK-LABEL: stack_fold_bsr_i32
;CHECK: bsrl {{-?[0-9]*}}(%rsp), %eax {{.*#+}} 4-byte Folded Reload
%1 = tail call i64 asm sideeffect "nop", "=x,~{rax},~{rbx},~{rcx},~{rdx},~{rsi},~{rdi},~{rbp},~{r8},~{r9},~{r10},~{r11},~{r12},~{r13},~{r14},~{r15}"()
%2 = call i32 @llvm.ctlz.i32(i32 %a0, i1 -1)
ret i32 %2
}
declare i32 @llvm.ctlz.i32(i32, i1)
define i64 @stack_fold_bsr_i64(i64 %a0) {
;CHECK-LABEL: stack_fold_bsr_i64
;CHECK: bsrq {{-?[0-9]*}}(%rsp), %rax {{.*#+}} 8-byte Folded Reload
%1 = tail call i64 asm sideeffect "nop", "=x,~{rax},~{rbx},~{rcx},~{rdx},~{rsi},~{rdi},~{rbp},~{r8},~{r9},~{r10},~{r11},~{r12},~{r13},~{r14},~{r15}"()
%2 = call i64 @llvm.ctlz.i64(i64 %a0, i1 -1)
ret i64 %2
}
declare i64 @llvm.ctlz.i64(i64, i1)