case CmpInst::ICMP_ULE: {
ConstantInt *CI;
- // LHS u< LHS +_{nuw} C if C > 0
- // LHS u<= LHS +_{nuw} C if C >= 0
+ // LHS u< LHS +_{nuw} C if C != 0
+ // LHS u<= LHS +_{nuw} C
if (match(RHS, m_NUWAdd(m_Specific(LHS), m_ConstantInt(CI)))) {
if (Pred == CmpInst::ICMP_ULT)
- return CI->getValue().isStrictlyPositive();
- return !CI->isNegative();
+ return !CI->isZero();
+ return true;
}
return false;
}
ret i1 %res
}
-; i +_{nuw} C_{>0} <u L ==> i <u L
+; i +_{nuw} C <u L ==> i <u L
define i1 @test4(i32 %length.i, i32 %i) {
; CHECK-LABEL: @test4
; CHECK: ret i1 true
ret i1 %res
}
+; i +_{nuw} C <s L ==> i < L, even if C is negative
+define i1 @test9(i32 %length.i, i32 %i) {
+; CHECK-LABEL: @test9(
+; CHECK: ret i1 true
+ %iplus1 = add nuw i32 %i, -100
+ %var29 = icmp ult i32 %i, %length.i
+ %var30 = icmp ult i32 %iplus1, %length.i
+ %res = icmp ule i1 %var30, %var29
+ ret i1 %res
+}
+
; X >=(s) Y == X ==> Y (i1 1 becomes -1 for reasoning)
define i1 @test_sge(i32 %length.i, i32 %i) {
; CHECK-LABEL: @test_sge