Mercurial > hg > Members > tobaru > cbc > CbC_llvm
view test/CodeGen/X86/hipe-prologue.ll @ 33:e4204d083e25
LLVM 3.5
author | Kaito Tokumori <e105711@ie.u-ryukyu.ac.jp> |
---|---|
date | Thu, 12 Dec 2013 14:32:10 +0900 |
parents | 95c75e76d11b |
children | 1172e4bd9c6f |
line wrap: on
line source
; RUN: llc < %s -mcpu=generic -mtriple=i686-linux -verify-machineinstrs | FileCheck %s -check-prefix=X32-Linux ; RUN: llc < %s -mtriple=x86_64-linux-gnu -verify-machineinstrs | FileCheck %s -check-prefix=X64-Linux ; The HiPE compiler (i.e., the native code compiler of the Erlang/OTP system) ; adds a custom assembly prologue in order to efficiently manipulate the stack ; at runtime. ; Just to prevent the alloca from being optimized away. declare void @dummy_use(i32*, i32) define {i32, i32} @test_basic(i32 %hp, i32 %p) { ; X32-Linux-LABEL: test_basic: ; X32-Linux-NOT: calll inc_stack_0 ; X64-Linux-LABEL: test_basic: ; X64-Linux-NOT: callq inc_stack_0 %mem = alloca i32, i32 10 call void @dummy_use (i32* %mem, i32 10) %1 = insertvalue {i32, i32} undef, i32 %hp, 0 %2 = insertvalue {i32, i32} %1, i32 %p, 1 ret {i32, i32} %1 } define cc 11 {i32, i32} @test_basic_hipecc(i32 %hp, i32 %p) { ; X32-Linux-LABEL: test_basic_hipecc: ; X32-Linux: leal -156(%esp), %ebx ; X32-Linux-NEXT: cmpl 76(%ebp), %ebx ; X32-Linux-NEXT: jb .LBB1_1 ; X32-Linux: ret ; X32-Linux: .LBB1_1: ; X32-Linux-NEXT: calll inc_stack_0 ; X64-Linux-LABEL: test_basic_hipecc: ; X64-Linux: leaq -232(%rsp), %r14 ; X64-Linux-NEXT: cmpq 144(%rbp), %r14 ; X64-Linux-NEXT: jb .LBB1_1 ; X64-Linux: ret ; X64-Linux: .LBB1_1: ; X64-Linux-NEXT: callq inc_stack_0 %mem = alloca i32, i32 10 call void @dummy_use (i32* %mem, i32 10) %1 = insertvalue {i32, i32} undef, i32 %hp, 0 %2 = insertvalue {i32, i32} %1, i32 %p, 1 ret {i32, i32} %2 } define cc 11 {i32,i32,i32} @test_nocall_hipecc(i32 %hp,i32 %p,i32 %x,i32 %y) { ; X32-Linux-LABEL: test_nocall_hipecc: ; X32-Linux-NOT: calll inc_stack_0 ; X64-Linux-LABEL: test_nocall_hipecc: ; X64-Linux-NOT: callq inc_stack_0 %1 = add i32 %x, %y %2 = mul i32 42, %1 %3 = sub i32 24, %2 %4 = insertvalue {i32, i32, i32} undef, i32 %hp, 0 %5 = insertvalue {i32, i32, i32} %4, i32 %p, 1 %6 = insertvalue {i32, i32, i32} %5, i32 %p, 2 ret {i32, i32, i32} %6 }