155 lines
		
	
	
		
			3.8 KiB
		
	
	
	
		
			LLVM
		
	
	
	
			
		
		
	
	
			155 lines
		
	
	
		
			3.8 KiB
		
	
	
	
		
			LLVM
		
	
	
	
| ; RUN: opt < %s -loop-unswitch -verify-loop-info -S < %s 2>&1 | FileCheck %s
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| ; RUN: opt < %s -loop-unswitch -verify-loop-info -enable-mssa-loop-dependency=true -verify-memoryssa -S < %s 2>&1 | FileCheck %s
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| 
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| @sink = global i32 0, align 4
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| @y = global i64 0, align 8
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| 
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| ; The following is approximately:
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| ; void f(bool x, int p, int q) {
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| ;   volatile bool x2 = x;
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| ;   for (int i = 0; i < 1; ++i) {
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| ;     if (x2) {
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| ;       if (y)
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| ;         sink = p;
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| ;       else
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| ;         sink = q;
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| ;     }
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| ;   }
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| ; }
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| ; With MemorySanitizer, the loop can not be unswitched on "y", because "y" could
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| ; be uninitialized when x == false.
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| ; Test that the branch on "y" is inside the loop (after the first unconditional
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| ; branch).
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| 
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| define void @may_not_execute(i1 zeroext %x, i32 %p, i32 %q) sanitize_memory {
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| ; CHECK-LABEL: @may_not_execute(
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| entry:
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| ; CHECK: %[[Y:.*]] = load i64, i64* @y, align 8
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| ; CHECK: %[[YB:.*]] = icmp eq i64 %[[Y]], 0
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| ; CHECK-NOT: br i1
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| ; CHECK: br label
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| ; CHECK: br i1 %[[YB]]
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| 
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|   %x2 = alloca i8, align 1
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|   %frombool1 = zext i1 %x to i8
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|   store volatile i8 %frombool1, i8* %x2, align 1
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|   %0 = load i64, i64* @y, align 8
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|   %tobool3 = icmp eq i64 %0, 0
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|   br label %for.body
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| 
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| for.body:
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|   %i.01 = phi i32 [ 0, %entry ], [ %inc, %for.inc ]
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|   %x2.0. = load volatile i8, i8* %x2, align 1
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|   %tobool2 = icmp eq i8 %x2.0., 0
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|   br i1 %tobool2, label %for.inc, label %if.then
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| 
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| if.then:
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|   br i1 %tobool3, label %if.else, label %if.then4
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| 
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| if.then4:
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|   store volatile i32 %p, i32* @sink, align 4
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|   br label %for.inc
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| 
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| if.else:
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|   store volatile i32 %q, i32* @sink, align 4
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|   br label %for.inc
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| 
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| for.inc:
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|   %inc = add nsw i32 %i.01, 1
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|   %cmp = icmp slt i32 %inc, 1
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|   br i1 %cmp, label %for.body, label %for.end
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| 
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| for.end:
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|   ret void
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| }
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| 
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| 
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| ; The same as above, but "y" is a function parameter instead of a global.
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| ; This shows that it is not enough to suppress hoisting of load instructions,
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| ; the actual problem is in the speculative branching.
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| 
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| define void @may_not_execute2(i1 zeroext %x, i1 zeroext %y, i32 %p, i32 %q) sanitize_memory {
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| ; CHECK-LABEL: @may_not_execute2(
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| entry:
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| ; CHECK-NOT: br i1
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| ; CHECK: br label
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| ; CHECK: br i1 %y,
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|   %x2 = alloca i8, align 1
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|   %frombool2 = zext i1 %x to i8
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|   store volatile i8 %frombool2, i8* %x2, align 1
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|   br label %for.body
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| 
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| for.body:
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|   %i.01 = phi i32 [ 0, %entry ], [ %inc, %for.inc ]
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|   %x2.0. = load volatile i8, i8* %x2, align 1
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|   %tobool3 = icmp eq i8 %x2.0., 0
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|   br i1 %tobool3, label %for.inc, label %if.then
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| 
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| if.then:
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|   br i1 %y, label %if.then5, label %if.else
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| 
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| if.then5:
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|   store volatile i32 %p, i32* @sink, align 4
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|   br label %for.inc
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| 
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| if.else:
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|   store volatile i32 %q, i32* @sink, align 4
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|   br label %for.inc
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| 
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| for.inc:
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|   %inc = add nsw i32 %i.01, 1
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|   %cmp = icmp slt i32 %inc, 1
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|   br i1 %cmp, label %for.body, label %for.end
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| 
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| for.end:
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|   ret void
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| }
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| 
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| 
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| ; The following is approximately:
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| ; void f(bool x, int p, int q) {
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| ;   volatile bool x2 = x;
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| ;   for (int i = 0; i < 1; ++i) {
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| ;     if (y)
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| ;       sink = p;
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| ;     else
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| ;       sink = q;
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| ;   }
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| ; }
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| ; "if (y)" is guaranteed to execute; the loop can be unswitched.
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| 
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| define void @must_execute(i1 zeroext %x, i32 %p, i32 %q) sanitize_memory {
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| ; CHECK-LABEL: @must_execute(
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| entry:
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| ; CHECK:       %[[Y:.*]] = load i64, i64* @y, align 8
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| ; CHECK-NEXT:  %[[YB:.*]] = icmp eq i64 %[[Y]], 0
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| ; CHECK-NEXT:  br i1 %[[YB]],
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| 
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|   %x2 = alloca i8, align 1
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|   %frombool1 = zext i1 %x to i8
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|   store volatile i8 %frombool1, i8* %x2, align 1
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|   %0 = load i64, i64* @y, align 8
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|   %tobool2 = icmp eq i64 %0, 0
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|   br label %for.body
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| 
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| for.body:
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|   %i.01 = phi i32 [ 0, %entry ], [ %inc, %for.inc ]
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|   br i1 %tobool2, label %if.else, label %if.then
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| 
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| if.then:
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|   store volatile i32 %p, i32* @sink, align 4
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|   br label %for.inc
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| 
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| if.else:
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|   store volatile i32 %q, i32* @sink, align 4
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|   br label %for.inc
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| 
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| for.inc:
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|   %inc = add nsw i32 %i.01, 1
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|   %cmp = icmp slt i32 %inc, 1
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|   br i1 %cmp, label %for.body, label %for.end
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| 
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| for.end:
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|   ret void
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| }
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