if-conversion.ll 5.2 KB

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  1. ; RUN: opt < %s -loop-vectorize -force-vector-interleave=1 -force-vector-width=4 -enable-if-conversion -dce -instcombine -S | FileCheck %s
  2. 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-n8:16:32:64-S128"
  3. target triple = "x86_64-apple-macosx10.9.0"
  4. ; This is the loop in this example:
  5. ;
  6. ;int function0(int *a, int *b, int start, int end) {
  7. ;
  8. ; for (int i=start; i<end; ++i) {
  9. ; unsigned k = a[i];
  10. ;
  11. ; if (a[i] > b[i]) <------ notice the IF inside the loop.
  12. ; k = k * 5 + 3;
  13. ;
  14. ; a[i] = k; <---- K is a phi node that becomes vector-select.
  15. ; }
  16. ;}
  17. ;CHECK-LABEL: @function0(
  18. ;CHECK: load <4 x i32>
  19. ;CHECK: mul <4 x i32>
  20. ;CHECK: add <4 x i32>
  21. ;CHECK: icmp sle <4 x i32>
  22. ;CHECK: select <4 x i1>
  23. ;CHECK: ret i32
  24. define i32 @function0(i32* nocapture %a, i32* nocapture %b, i32 %start, i32 %end) nounwind uwtable ssp {
  25. entry:
  26. %cmp16 = icmp slt i32 %start, %end
  27. br i1 %cmp16, label %for.body.lr.ph, label %for.end
  28. for.body.lr.ph:
  29. %0 = sext i32 %start to i64
  30. br label %for.body
  31. for.body:
  32. %indvars.iv = phi i64 [ %0, %for.body.lr.ph ], [ %indvars.iv.next, %if.end ]
  33. %arrayidx = getelementptr inbounds i32, i32* %a, i64 %indvars.iv
  34. %1 = load i32, i32* %arrayidx, align 4
  35. %arrayidx4 = getelementptr inbounds i32, i32* %b, i64 %indvars.iv
  36. %2 = load i32, i32* %arrayidx4, align 4
  37. %cmp5 = icmp sgt i32 %1, %2
  38. br i1 %cmp5, label %if.then, label %if.end
  39. if.then:
  40. %mul = mul i32 %1, 5
  41. %add = add i32 %mul, 3
  42. br label %if.end
  43. if.end:
  44. %k.0 = phi i32 [ %add, %if.then ], [ %1, %for.body ]
  45. store i32 %k.0, i32* %arrayidx, align 4
  46. %indvars.iv.next = add i64 %indvars.iv, 1
  47. %3 = trunc i64 %indvars.iv.next to i32
  48. %cmp = icmp slt i32 %3, %end
  49. br i1 %cmp, label %for.body, label %for.end
  50. for.end:
  51. ret i32 undef
  52. }
  53. ; int func(int *A, int n) {
  54. ; unsigned sum = 0;
  55. ; for (int i = 0; i < n; ++i)
  56. ; if (A[i] > 30)
  57. ; sum += A[i] + 2;
  58. ;
  59. ; return sum;
  60. ; }
  61. ;CHECK-LABEL: @reduction_func(
  62. ;CHECK: load <4 x i32>
  63. ;CHECK: add <4 x i32>
  64. ;CHECK: icmp sle <4 x i32>
  65. ;CHECK: select <4 x i1>
  66. ;CHECK: ret i32
  67. define i32 @reduction_func(i32* nocapture %A, i32 %n) nounwind uwtable readonly ssp {
  68. entry:
  69. %cmp10 = icmp sgt i32 %n, 0
  70. br i1 %cmp10, label %for.body, label %for.end
  71. for.body: ; preds = %entry, %for.inc
  72. %indvars.iv = phi i64 [ %indvars.iv.next, %for.inc ], [ 0, %entry ]
  73. %sum.011 = phi i32 [ %sum.1, %for.inc ], [ 0, %entry ]
  74. %arrayidx = getelementptr inbounds i32, i32* %A, i64 %indvars.iv
  75. %0 = load i32, i32* %arrayidx, align 4
  76. %cmp1 = icmp sgt i32 %0, 30
  77. br i1 %cmp1, label %if.then, label %for.inc
  78. if.then: ; preds = %for.body
  79. %add = add i32 %sum.011, 2
  80. %add4 = add i32 %add, %0
  81. br label %for.inc
  82. for.inc: ; preds = %for.body, %if.then
  83. %sum.1 = phi i32 [ %add4, %if.then ], [ %sum.011, %for.body ]
  84. %indvars.iv.next = add i64 %indvars.iv, 1
  85. %lftr.wideiv = trunc i64 %indvars.iv.next to i32
  86. %exitcond = icmp eq i32 %lftr.wideiv, %n
  87. br i1 %exitcond, label %for.end, label %for.body
  88. for.end: ; preds = %for.inc, %entry
  89. %sum.0.lcssa = phi i32 [ 0, %entry ], [ %sum.1, %for.inc ]
  90. ret i32 %sum.0.lcssa
  91. }
  92. @a = common global [1 x i32*] zeroinitializer, align 8
  93. @c = common global i32* null, align 8
  94. ; We use to if convert this loop. This is not safe because there is a trapping
  95. ; constant expression.
  96. ; PR16729
  97. ; CHECK-LABEL: trapping_constant_expression
  98. ; CHECK-NOT: or <4 x i32>
  99. define i32 @trapping_constant_expression() {
  100. entry:
  101. br label %for.body
  102. for.body:
  103. %inc3 = phi i32 [ 0, %entry ], [ %inc, %cond.end ]
  104. %or2 = phi i32 [ 0, %entry ], [ %or, %cond.end ]
  105. br i1 icmp eq (i32** getelementptr inbounds ([1 x i32*], [1 x i32*]* @a, i64 0, i64 0), i32** @c), label %cond.false, label %cond.end
  106. cond.false:
  107. br label %cond.end
  108. cond.end:
  109. %cond = phi i32 [ sdiv (i32 1, i32 zext (i1 icmp eq (i32** getelementptr inbounds ([1 x i32*], [1 x i32*]* @a, i64 0, i64 0), i32** @c) to i32)), %cond.false ], [ 0, %for.body ]
  110. %or = or i32 %or2, %cond
  111. %inc = add nsw i32 %inc3, 1
  112. %cmp = icmp slt i32 %inc, 128
  113. br i1 %cmp, label %for.body, label %for.end
  114. for.end:
  115. ret i32 %or
  116. }
  117. ; Neither should we if-convert if there is an instruction operand that is a
  118. ; trapping constant expression.
  119. ; PR16729
  120. ; CHECK-LABEL: trapping_constant_expression2
  121. ; CHECK-NOT: or <4 x i32>
  122. define i32 @trapping_constant_expression2() {
  123. entry:
  124. br label %for.body
  125. for.body:
  126. %inc3 = phi i32 [ 0, %entry ], [ %inc, %cond.end ]
  127. %or2 = phi i32 [ 0, %entry ], [ %or, %cond.end ]
  128. br i1 icmp eq (i32** getelementptr inbounds ([1 x i32*], [1 x i32*]* @a, i64 0, i64 0), i32** @c), label %cond.false, label %cond.end
  129. cond.false:
  130. %cond.1 = or i32 %inc3, sdiv (i32 1, i32 zext (i1 icmp eq (i32** getelementptr inbounds ([1 x i32*], [1 x i32*]* @a, i64 0, i64 1), i32** @c) to i32))
  131. br label %cond.end
  132. cond.end:
  133. %cond = phi i32 [ %cond.1, %cond.false ], [ %inc3, %for.body ]
  134. %or = or i32 %or2, %cond
  135. %inc = add nsw i32 %inc3, 1
  136. %cmp = icmp slt i32 %inc, 128
  137. br i1 %cmp, label %for.body, label %for.end
  138. for.end:
  139. ret i32 %or
  140. }