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https://github.com/c64scene-ar/llvm-6502.git
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eacb7020ec
Update the test suite to accommodate the change from signed integer types to signless integer types. The changes were of only a few kinds: 1. Make sure llvm-upgrade is run on the source which does the bulk of the changes automatically. 2. Change things like "grep 'int'" to "grep 'i32'" 3. In several tests bitcasting caused the same name to be reused in the same type plane. These had to be manually fixed. The fix was (generally) to leave the bitcast and provide the instruction with a new name. This should not affect the semantics of the test. In a few cases, the bitcasts were known to be superfluous and irrelevant to the test case so they were removed. 4. One test case uses a bytecode file which needed to be updated to the latest bytecode format. git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@32789 91177308-0d34-0410-b5e6-96231b3b80d8
55 lines
2.3 KiB
LLVM
55 lines
2.3 KiB
LLVM
; RUN: llvm-upgrade < %s | llvm-as | opt -predsimplify | llvm-dis | grep br | grep return.i.bb8_crit_edge | grep false
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%str = external global [4 x sbyte] ; <[4 x sbyte]*> [#uses=1]
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implementation ; Functions:
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declare int %sprintf(sbyte*, sbyte*, ...)
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int %main() {
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entry:
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br label %cond_true.outer
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cond_true.outer: ; preds = %cond_true.i, %entry
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%i.0.0.ph = phi int [ 0, %entry ], [ %tmp5, %cond_true.i ] ; <int> [#uses=1]
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%j.0.0.ph = phi int [ 0, %entry ], [ %tmp312, %cond_true.i ] ; <int> [#uses=2]
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br label %cond_true
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cond_true: ; preds = %return.i, %cond_true.outer
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%indvar.ui = phi uint [ 0, %cond_true.outer ], [ %indvar.next, %return.i ] ; <uint> [#uses=2]
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%indvar = cast uint %indvar.ui to int ; <int> [#uses=1]
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%i.0.0 = add int %indvar, %i.0.0.ph ; <int> [#uses=3]
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%savedstack = call sbyte* %llvm.stacksave( ) ; <sbyte*> [#uses=2]
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%tmp.i = seteq int %i.0.0, 0 ; <bool> [#uses=1]
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%tmp5 = add int %i.0.0, 1 ; <int> [#uses=3]
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br bool %tmp.i, label %return.i, label %cond_true.i
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cond_true.i: ; preds = %cond_true
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%tmp.i = alloca [1000 x sbyte] ; <[1000 x sbyte]*> [#uses=1]
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%tmp.sub.i = getelementptr [1000 x sbyte]* %tmp.i, int 0, int 0 ; <sbyte*> [#uses=2]
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%tmp4.i = call int (sbyte*, sbyte*, ...)* %sprintf( sbyte* %tmp.sub.i, sbyte* getelementptr ([4 x sbyte]* %str, int 0, uint 0), int %i.0.0 ) ; <int> [#uses=0]
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%tmp.i = load sbyte* %tmp.sub.i ; <sbyte> [#uses=1]
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%tmp7.i = cast sbyte %tmp.i to int ; <int> [#uses=1]
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call void %llvm.stackrestore( sbyte* %savedstack )
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%tmp312 = add int %tmp7.i, %j.0.0.ph ; <int> [#uses=2]
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%tmp19 = setgt int %tmp5, 9999 ; <bool> [#uses=1]
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br bool %tmp19, label %bb8, label %cond_true.outer
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return.i: ; preds = %cond_true
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call void %llvm.stackrestore( sbyte* %savedstack )
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%tmp21 = setgt int %tmp5, 9999 ; <bool> [#uses=1]
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%indvar.next = add uint %indvar.ui, 1 ; <uint> [#uses=1]
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br bool %tmp21, label %bb8, label %cond_true
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bb8: ; preds = %return.i, %cond_true.i
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%j.0.1 = phi int [ %j.0.0.ph, %return.i ], [ %tmp312, %cond_true.i ] ; <int> [#uses=1]
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%tmp10 = call int (sbyte*, ...)* %printf( sbyte* getelementptr ([4 x sbyte]* %str, int 0, uint 0), int %j.0.1 ) ; <int> [#uses=0]
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ret int undef
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}
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declare int %printf(sbyte*, ...)
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declare sbyte* %llvm.stacksave()
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declare void %llvm.stackrestore(sbyte*)
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