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llvm-mirror/test/Transforms/ConstantMerge/merge-both.ll
David Blaikie 65b92c4f37 [opaque pointer type] Add textual IR support for explicit type parameter for global aliases
update.py:
import fileinput
import sys
import re

alias_match_prefix = r"(.*(?:=|:|^)\s*(?:external |)(?:(?:private|internal|linkonce|linkonce_odr|weak|weak_odr|common|appending|extern_weak|available_externally) )?(?:default |hidden |protected )?(?:dllimport |dllexport )?(?:unnamed_addr |)(?:thread_local(?:\([a-z]*\))? )?alias"
plain = re.compile(alias_match_prefix + r" (.*?))(| addrspace\(\d+\) *)\*($| *(?:%|@|null|undef|blockaddress|addrspacecast|\[\[[a-zA-Z]|\{\{).*$)")
cast  = re.compile(alias_match_prefix + r") ((?:bitcast|inttoptr|addrspacecast)\s*\(.* to (.*?)(| addrspace\(\d+\) *)\*\)\s*(?:;.*)?$)")
gep   = re.compile(alias_match_prefix + r") ((?:getelementptr)\s*(?:inbounds)?\s*\((?P<type>.*), (?P=type)(?:\s*addrspace\(\d+\)\s*)?\* .*\)\s*(?:;.*)?$)")

def conv(line):
  m = re.match(cast, line)
  if m:
    return m.group(1) + " " + m.group(3) + ", " + m.group(2)
  m = re.match(gep, line)
  if m:
    return m.group(1) + " " + m.group(3) + ", " + m.group(2)
  m = re.match(plain, line)
  if m:
    return m.group(1) + ", " + m.group(2) + m.group(3) + "*" + m.group(4) + "\n"
  return line

for line in sys.stdin:
  sys.stdout.write(conv(line))

apply.sh:
for name in "$@"
do
  python3 `dirname "$0"`/update.py < "$name" > "$name.tmp" && mv "$name.tmp" "$name"
  rm -f "$name.tmp"
done

The actual commands:
From llvm/src:
find test/ -name *.ll | xargs ./apply.sh
From llvm/src/tools/clang:
find test/ -name *.mm -o -name *.m -o -name *.cpp -o -name *.c | xargs -I '{}' ../../apply.sh "{}"
From llvm/src/tools/polly:
find test/ -name *.ll | xargs ./apply.sh

llvm-svn: 247378
2015-09-11 03:22:04 +00:00

42 lines
1.6 KiB
LLVM

; RUN: opt -constmerge -S < %s | FileCheck %s
; Test that in one run var3 is merged into var2 and var1 into var4.
; Test that we merge @var5 and @var6 into one with the higher alignment
declare void @zed(%struct.foobar*, %struct.foobar*)
%struct.foobar = type { i32 }
@var1 = internal constant %struct.foobar { i32 2 }
@var2 = unnamed_addr constant %struct.foobar { i32 2 }
@var3 = internal constant %struct.foobar { i32 2 }
@var4 = unnamed_addr constant %struct.foobar { i32 2 }
; CHECK: %struct.foobar = type { i32 }
; CHECK-NOT: @
; CHECK: @var2 = constant %struct.foobar { i32 2 }
; CHECK-NEXT: @var4 = constant %struct.foobar { i32 2 }
declare void @helper([16 x i8]*)
@var5 = internal constant [16 x i8] c"foo1bar2foo3bar\00", align 16
@var6 = private unnamed_addr constant [16 x i8] c"foo1bar2foo3bar\00", align 1
@var7 = internal constant [16 x i8] c"foo1bar2foo3bar\00"
@var8 = private unnamed_addr constant [16 x i8] c"foo1bar2foo3bar\00"
; CHECK-NEXT: @var7 = internal constant [16 x i8] c"foo1bar2foo3bar\00"
; CHECK-NEXT: @var8 = private constant [16 x i8] c"foo1bar2foo3bar\00", align 16
@var4a = alias %struct.foobar, %struct.foobar* @var4
@llvm.used = appending global [1 x %struct.foobar*] [%struct.foobar* @var4a], section "llvm.metadata"
define i32 @main() {
entry:
call void @zed(%struct.foobar* @var1, %struct.foobar* @var2)
call void @zed(%struct.foobar* @var3, %struct.foobar* @var4)
call void @helper([16 x i8]* @var5)
call void @helper([16 x i8]* @var6)
call void @helper([16 x i8]* @var7)
call void @helper([16 x i8]* @var8)
ret i32 0
}