Kai Nacke 5403c59c60 [PPC] Opaque pointer migration, part 2.
The LIT test cases were migrated with the script provided by
Nikita Popov. Due to the size of the change it is split into
several parts.

Reviewed By: nemanja, nikic

Differential Revision: https://reviews.llvm.org/D135474
2022-10-11 17:24:06 +00:00

63 lines
1.7 KiB
LLVM

; RUN: llc -verify-machineinstrs < %s -mtriple=powerpc64-unknown-linux-gnu -mcpu=pwr8 | FileCheck %s
; RUN: llc -verify-machineinstrs < %s -mtriple=powerpc64le-unknown-linux-gnu -mcpu=pwr8 | FileCheck %s
@a = global float 3.000000e+00, align 4
@b = global float 4.000000e+00, align 4
@c = global double 3.000000e+00, align 8
@d = global double 4.000000e+00, align 8
; Function Attrs: nounwind
define float @emit_xsresp() {
entry:
%0 = load float, ptr @a, align 4
%1 = load float, ptr @b, align 4
%div = fdiv arcp ninf float %0, %1
ret float %div
; CHECK-LABEL: @emit_xsresp
; CHECK: xsresp {{[0-9]+}}
}
; Function Attrs: nounwind
define float @emit_xsrsqrtesp(float %f) {
entry:
%f.addr = alloca float, align 4
store float %f, ptr %f.addr, align 4
%0 = load float, ptr %f.addr, align 4
%1 = load float, ptr @b, align 4
%2 = call float @llvm.sqrt.f32(float %1)
%div = fdiv arcp float %0, %2
ret float %div
; CHECK-LABEL: @emit_xsrsqrtesp
; CHECK: xsrsqrtesp {{[0-9]+}}
}
; Function Attrs: nounwind readnone
declare float @llvm.sqrt.f32(float)
; Function Attrs: nounwind
define double @emit_xsredp() {
entry:
%0 = load double, ptr @c, align 8
%1 = load double, ptr @d, align 8
%div = fdiv arcp ninf double %0, %1
ret double %div
; CHECK-LABEL: @emit_xsredp
; CHECK: xsredp {{[0-9]+}}
}
; Function Attrs: nounwind
define double @emit_xsrsqrtedp(double %f) {
entry:
%f.addr = alloca double, align 8
store double %f, ptr %f.addr, align 8
%0 = load double, ptr %f.addr, align 8
%1 = load double, ptr @d, align 8
%2 = call double @llvm.sqrt.f64(double %1)
%div = fdiv arcp double %0, %2
ret double %div
; CHECK-LABEL: @emit_xsrsqrtedp
; CHECK: xsrsqrtedp {{[0-9]+}}
}
; Function Attrs: nounwind readnone
declare double @llvm.sqrt.f64(double) #1