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Tweak test for recent relro stuff
llvm-svn: 68035
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@ -1,15 +1,23 @@
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; RUN: llvm-as < %s | llc -relocation-model=static | grep rodata | count 3
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; RUN: llvm-as < %s | llc -relocation-model=static | grep -F "rodata.cst" | count 2
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; RUN: llvm-as < %s | llc -relocation-model=pic | grep rodata | count 2
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; RUN: llvm-as < %s | llc -relocation-model=pic | grep -F ".data" | count 1
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; RUN: llvm-as < %s | llc -relocation-model=pic | grep -F ".data.rel.ro" | count 2
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; RUN: llvm-as < %s | llc -relocation-model=pic | grep -F ".data.rel.ro.local" | count 1
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; RUN: llvm-as < %s | llc -relocation-model=pic | grep -F ".data.rel" | count 4
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; RUN: llvm-as < %s | llc -relocation-model=pic | grep -F ".data.rel.local" | count 1
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target datalayout = "e-p:64:64:64-i1:8:8-i8:8:8-i16:16:16-i32:32:32-i64:64:64-f32:32:32-f64:64:64-v64:64:64-v128:128:128-a0:0:64-s0:64:64-f80:128:128"
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target triple = "x86_64-unknown-linux-gnu"
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@a = internal constant [2 x i32] [i32 1, i32 2] ; <[2 x i32]*> [#uses=1]
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@a1 = constant [2 x i32] [i32 1, i32 2] ; <[2 x i32]*> [#uses=1]
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@e = internal constant [2 x [2 x i32]] [[2 x i32] [i32 1, i32 2], [2 x i32] [i32 3, i32 4]], align 16 ; <[2 x [2 x i32]]*> [#uses=1]
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@e1 = constant [2 x [2 x i32]] [[2 x i32] [i32 1, i32 2], [2 x i32] [i32 3, i32 4]], align 16 ; <[2 x [2 x i32]]*> [#uses=1]
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@p = constant i8* bitcast ([2 x i32]* @a to i8*) ; <i8**> [#uses=0]
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@t = constant i8* bitcast ([2 x [2 x i32]]* @e to i8*) ; <i8**> [#uses=0]
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@p1 = constant i8* bitcast ([2 x i32]* @a1 to i8*) ; <i8**> [#uses=0]
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@t1 = constant i8* bitcast ([2 x [2 x i32]]* @e1 to i8*) ; <i8**> [#uses=0]
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@a = internal constant [2 x i32] [i32 1, i32 2]
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@a1 = constant [2 x i32] [i32 1, i32 2]
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@e = internal constant [2 x [2 x i32]] [[2 x i32] [i32 1, i32 2], [2 x i32] [i32 3, i32 4]], align 16
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@e1 = constant [2 x [2 x i32]] [[2 x i32] [i32 1, i32 2], [2 x i32] [i32 3, i32 4]], align 16
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@p = constant i8* bitcast ([2 x i32]* @a to i8*)
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@t = constant i8* bitcast ([2 x [2 x i32]]* @e to i8*)
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@p1 = constant i8* bitcast ([2 x i32]* @a1 to i8*)
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@t1 = constant i8* bitcast ([2 x [2 x i32]]* @e1 to i8*)
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@p2 = internal global i8* bitcast([2 x i32]* @a1 to i8*)
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@t2 = internal global i8* bitcast([2 x [2 x i32]]* @e1 to i8*)
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@p3 = internal global i8* bitcast([2 x i32]* @a to i8*)
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@t3 = internal global i8* bitcast([2 x [2 x i32]]* @e to i8*)
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