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llvm-mirror/test/CodeGen/ARM/fp_convert.ll
Jakob Stoklund Olesen e43aca1c39 Inflate register classes after coalescing.
Coalescing can remove copy-like instructions with sub-register operands
that constrained the register class.  Examples are:

  x86: GR32_ABCD:sub_8bit_hi -> GR32
  arm: DPR_VFP2:ssub0 -> DPR

Recompute the register class of any virtual registers that are used by
less instructions after coalescing.

This affects code generation for the Cortex-A8 where we use NEON
instructions for f32 operations, c.f. fp_convert.ll:

  vadd.f32  d16, d1, d0
  vcvt.s32.f32  d0, d16

The register allocator is now free to use d16 for the temporary, and
that comes first in the allocation order because it doesn't interfere
with any s-registers.

llvm-svn: 137133
2011-08-09 18:19:41 +00:00

51 lines
1.2 KiB
LLVM

; RUN: llc < %s -march=arm -mattr=+vfp2 | FileCheck %s -check-prefix=VFP2
; RUN: llc < %s -march=arm -mattr=+neon | FileCheck %s -check-prefix=VFP2
; RUN: llc < %s -march=arm -mcpu=cortex-a8 | FileCheck %s -check-prefix=NEON
; RUN: llc < %s -march=arm -mcpu=cortex-a9 | FileCheck %s -check-prefix=VFP2
define i32 @test1(float %a, float %b) {
; VFP2: test1:
; VFP2: vcvt.s32.f32 s{{.}}, s{{.}}
; NEON: test1:
; NEON: vadd.f32 [[D0:d[0-9]+]]
; NEON: vcvt.s32.f32 d0, [[D0]]
entry:
%0 = fadd float %a, %b
%1 = fptosi float %0 to i32
ret i32 %1
}
define i32 @test2(float %a, float %b) {
; VFP2: test2:
; VFP2: vcvt.u32.f32 s{{.}}, s{{.}}
; NEON: test2:
; NEON: vadd.f32 [[D0:d[0-9]+]]
; NEON: vcvt.u32.f32 d0, [[D0]]
entry:
%0 = fadd float %a, %b
%1 = fptoui float %0 to i32
ret i32 %1
}
define float @test3(i32 %a, i32 %b) {
; VFP2: test3:
; VFP2: vcvt.f32.u32 s{{.}}, s{{.}}
; NEON: test3:
; NEON: vcvt.f32.u32 d0, d0
entry:
%0 = add i32 %a, %b
%1 = uitofp i32 %0 to float
ret float %1
}
define float @test4(i32 %a, i32 %b) {
; VFP2: test4:
; VFP2: vcvt.f32.s32 s{{.}}, s{{.}}
; NEON: test4:
; NEON: vcvt.f32.s32 d0, d0
entry:
%0 = add i32 %a, %b
%1 = sitofp i32 %0 to float
ret float %1
}