; RUN: llc < %s -mtriple=x86_64-unknown-unknown -mcpu=x86-64 | FileCheck %s ; Anything more than one division using a single divisor operand ; should be converted into a reciprocal and multiplication. define float @div1_arcp(float %x, float %y, float %z) #0 { ; CHECK-LABEL: div1_arcp: ; CHECK: # BB#0: ; CHECK-NEXT: divss %xmm1, %xmm0 ; CHECK-NEXT: retq %div1 = fdiv arcp float %x, %y ret float %div1 } define float @div2_arcp(float %x, float %y, float %z) #0 { ; CHECK-LABEL: div2_arcp: ; CHECK: # BB#0: ; CHECK-NEXT: movss {{.*#+}} xmm3 = mem[0],zero,zero,zero ; CHECK-NEXT: divss %xmm2, %xmm3 ; CHECK-NEXT: mulss %xmm1, %xmm0 ; CHECK-NEXT: mulss %xmm3, %xmm0 ; CHECK-NEXT: mulss %xmm3, %xmm0 ; CHECK-NEXT: retq %div1 = fdiv arcp float %x, %z %mul = fmul arcp float %div1, %y %div2 = fdiv arcp float %mul, %z ret float %div2 } ; If the reciprocal is already calculated, we should not ; generate an extra multiplication by 1.0. define double @div3_arcp(double %x, double %y, double %z) #0 { ; CHECK-LABEL: div3_arcp: ; CHECK: # BB#0: ; CHECK-NEXT: movsd{{.*#+}} xmm2 = mem[0],zero ; CHECK-NEXT: divsd %xmm1, %xmm2 ; CHECK-NEXT: mulsd %xmm2, %xmm0 ; CHECK-NEXT: addsd %xmm2, %xmm0 ; CHECK-NEXT: retq %div1 = fdiv fast double 1.0, %y %div2 = fdiv fast double %x, %y %ret = fadd fast double %div2, %div1 ret double %ret } define void @PR24141() #0 { ; CHECK-LABEL: PR24141: ; CHECK: callq ; CHECK-NEXT: divsd ; CHECK-NEXT: jmp entry: br label %while.body while.body: %x.0 = phi double [ undef, %entry ], [ %div, %while.body ] %call = call { double, double } @g(double %x.0) %xv0 = extractvalue { double, double } %call, 0 %xv1 = extractvalue { double, double } %call, 1 %div = fdiv double %xv0, %xv1 br label %while.body } declare { double, double } @g(double) ; FIXME: If the backend understands 'arcp', then this attribute is unnecessary. attributes #0 = { "unsafe-fp-math"="true" }