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fa1c8745ac
This patch extends the `-bb` option to be able to use the group extraction feature from the BlockExtractor. In particular, `-bb=func:bb` is modified to support a list of basic blocks per function: `-bb=func:bb1[;bb2...]` that will be extracted together if at all possible (region must be single entry.) Differential Revision: https://reviews.llvm.org/D60973 llvm-svn: 359464
125 lines
3.8 KiB
LLVM
125 lines
3.8 KiB
LLVM
; RUN: llvm-extract -bb 'foo:if;then;else' -bb 'bar:bb14;bb20' -S %s | FileCheck %s
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; Extract two groups of basic blocks in two different functions.
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; The first extracted function is the region composed by the
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; blocks if, then, and else from foo.
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; CHECK: define dso_local void @foo.if.split(i32 %arg1, i32 %arg, i32* %tmp.0.ce.out) {
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; CHECK: newFuncRoot:
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; CHECK: br label %if.split
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;
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; CHECK: end.exitStub: ; preds = %end.split
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; CHECK: ret void
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;
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; CHECK: then: ; preds = %if.split
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; CHECK: %tmp12 = shl i32 %arg1, 2
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; CHECK: %tmp13 = add nsw i32 %tmp12, %arg
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; CHECK: br label %end.split
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;
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; CHECK: else: ; preds = %if.split
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; CHECK: %tmp22 = mul nsw i32 %arg, 3
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; CHECK: %tmp24 = sdiv i32 %arg1, 6
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; CHECK: %tmp25 = add nsw i32 %tmp24, %tmp22
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; CHECK: br label %end.split
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;
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; CHECK: if.split: ; preds = %newFuncRoot
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; CHECK: %tmp5 = icmp sgt i32 %arg, 0
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; CHECK: %tmp8 = icmp sgt i32 %arg1, 0
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; CHECK: %or.cond = and i1 %tmp5, %tmp8
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; CHECK: br i1 %or.cond, label %then, label %else
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;
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; CHECK: end.split: ; preds = %then, %else
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; CHECK: %tmp.0.ce = phi i32 [ %tmp13, %then ], [ %tmp25, %else ]
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; CHECK: store i32 %tmp.0.ce, i32* %tmp.0.ce.out
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; CHECK: br label %end.exitStub
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; CHECK: }
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; The second extracted function is the region composed by the blocks
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; bb14 and bb20 from bar.
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; CHECK: define dso_local i1 @bar.bb14(i32 %arg1, i32 %arg, i32* %tmp25.out) {
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; CHECK: newFuncRoot:
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; CHECK: br label %bb14
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;
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; CHECK: bb26.exitStub: ; preds = %bb14
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; CHECK: ret i1 true
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;
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; CHECK: bb30.exitStub: ; preds = %bb20
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; CHECK: ret i1 false
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;
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; CHECK: bb14: ; preds = %newFuncRoot
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; CHECK: %tmp0 = and i32 %arg1, %arg
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; CHECK: %tmp1 = icmp slt i32 %tmp0, 0
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; CHECK: br i1 %tmp1, label %bb20, label %bb26.exitStub
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;
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; CHECK: bb20: ; preds = %bb14
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; CHECK: %tmp22 = mul nsw i32 %arg, 3
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; CHECK: %tmp24 = sdiv i32 %arg1, 6
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; CHECK: %tmp25 = add nsw i32 %tmp24, %tmp22
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; CHECK: store i32 %tmp25, i32* %tmp25.out
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; CHECK: br label %bb30.exitStub
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; CHECK: }
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define i32 @foo(i32 %arg, i32 %arg1) {
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if:
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%tmp5 = icmp sgt i32 %arg, 0
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%tmp8 = icmp sgt i32 %arg1, 0
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%or.cond = and i1 %tmp5, %tmp8
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br i1 %or.cond, label %then, label %else
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then:
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%tmp12 = shl i32 %arg1, 2
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%tmp13 = add nsw i32 %tmp12, %arg
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br label %end
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else:
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%tmp22 = mul nsw i32 %arg, 3
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%tmp24 = sdiv i32 %arg1, 6
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%tmp25 = add nsw i32 %tmp24, %tmp22
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br label %end
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end:
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%tmp.0 = phi i32 [ %tmp13, %then ], [ %tmp25, %else ]
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%and0 = and i32 %tmp.0, %arg
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%cmp1 = icmp slt i32 %and0, 0
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br i1 %cmp1, label %ret0, label %ret1
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ret0:
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ret i32 0
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ret1:
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ret i32 1
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}
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define i32 @bar(i32 %arg, i32 %arg1) {
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bb:
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%tmp5 = icmp sgt i32 %arg, 0
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%tmp8 = icmp sgt i32 %arg1, 0
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%or.cond = and i1 %tmp5, %tmp8
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br i1 %or.cond, label %bb9, label %bb14
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bb9: ; preds = %bb
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%tmp12 = shl i32 %arg1, 2
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%tmp13 = add nsw i32 %tmp12, %arg
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br label %bb30
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bb14: ; preds = %bb
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%tmp0 = and i32 %arg1, %arg
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%tmp1 = icmp slt i32 %tmp0, 0
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br i1 %tmp1, label %bb20, label %bb26
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bb20: ; preds = %bb14
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%tmp22 = mul nsw i32 %arg, 3
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%tmp24 = sdiv i32 %arg1, 6
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%tmp25 = add nsw i32 %tmp24, %tmp22
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br label %bb30
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bb26: ; preds = %bb14
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%tmp29 = sub nsw i32 %arg, %arg1
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br label %bb30
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bb30: ; preds = %bb26, %bb20, %bb9
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%tmp.0 = phi i32 [ %tmp13, %bb9 ], [ %tmp25, %bb20 ], [ %tmp29, %bb26 ]
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ret i32 %tmp.0
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}
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