nsw.ll 6.2 KB

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  1. ; RUN: opt < %s -analyze -scalar-evolution | FileCheck %s
  2. ; The addrecs in this loop are analyzable only by using nsw information.
  3. target datalayout = "e-p:64:64:64-i1:8:8-i8:8:8-i16:16:16-i32:32:32-i64:64:64"
  4. ; CHECK: Classifying expressions for: @test1
  5. define void @test1(double* %p) nounwind {
  6. entry:
  7. %tmp = load double, double* %p, align 8 ; <double> [#uses=1]
  8. %tmp1 = fcmp ogt double %tmp, 2.000000e+00 ; <i1> [#uses=1]
  9. br i1 %tmp1, label %bb.nph, label %return
  10. bb.nph: ; preds = %entry
  11. br label %bb
  12. bb: ; preds = %bb1, %bb.nph
  13. %i.01 = phi i32 [ %tmp8, %bb1 ], [ 0, %bb.nph ] ; <i32> [#uses=3]
  14. ; CHECK: %i.01
  15. ; CHECK-NEXT: --> {0,+,1}<nuw><nsw><%bb>
  16. %tmp2 = sext i32 %i.01 to i64 ; <i64> [#uses=1]
  17. %tmp3 = getelementptr double, double* %p, i64 %tmp2 ; <double*> [#uses=1]
  18. %tmp4 = load double, double* %tmp3, align 8 ; <double> [#uses=1]
  19. %tmp5 = fmul double %tmp4, 9.200000e+00 ; <double> [#uses=1]
  20. %tmp6 = sext i32 %i.01 to i64 ; <i64> [#uses=1]
  21. %tmp7 = getelementptr double, double* %p, i64 %tmp6 ; <double*> [#uses=1]
  22. ; CHECK: %tmp7
  23. ; CHECK-NEXT: --> {%p,+,8}<%bb>
  24. store double %tmp5, double* %tmp7, align 8
  25. %tmp8 = add nsw i32 %i.01, 1 ; <i32> [#uses=2]
  26. ; CHECK: %tmp8
  27. ; CHECK-NEXT: --> {1,+,1}<nuw><nsw><%bb>
  28. br label %bb1
  29. bb1: ; preds = %bb
  30. %phitmp = sext i32 %tmp8 to i64 ; <i64> [#uses=1]
  31. ; CHECK: %phitmp
  32. ; CHECK-NEXT: --> {1,+,1}<nuw><nsw><%bb>
  33. %tmp9 = getelementptr double, double* %p, i64 %phitmp ; <double*> [#uses=1]
  34. ; CHECK: %tmp9
  35. ; CHECK-NEXT: --> {(8 + %p),+,8}<%bb>
  36. %tmp10 = load double, double* %tmp9, align 8 ; <double> [#uses=1]
  37. %tmp11 = fcmp ogt double %tmp10, 2.000000e+00 ; <i1> [#uses=1]
  38. br i1 %tmp11, label %bb, label %bb1.return_crit_edge
  39. bb1.return_crit_edge: ; preds = %bb1
  40. br label %return
  41. return: ; preds = %bb1.return_crit_edge, %entry
  42. ret void
  43. }
  44. ; CHECK: Classifying expressions for: @test2
  45. define void @test2(i32* %begin, i32* %end) ssp {
  46. entry:
  47. %cmp1.i.i = icmp eq i32* %begin, %end
  48. br i1 %cmp1.i.i, label %_ZSt4fillIPiiEvT_S1_RKT0_.exit, label %for.body.lr.ph.i.i
  49. for.body.lr.ph.i.i: ; preds = %entry
  50. br label %for.body.i.i
  51. for.body.i.i: ; preds = %for.body.i.i, %for.body.lr.ph.i.i
  52. %__first.addr.02.i.i = phi i32* [ %begin, %for.body.lr.ph.i.i ], [ %ptrincdec.i.i, %for.body.i.i ]
  53. ; CHECK: %__first.addr.02.i.i
  54. ; CHECK-NEXT: --> {%begin,+,4}<nuw><%for.body.i.i>
  55. store i32 0, i32* %__first.addr.02.i.i, align 4
  56. %ptrincdec.i.i = getelementptr inbounds i32, i32* %__first.addr.02.i.i, i64 1
  57. ; CHECK: %ptrincdec.i.i
  58. ; CHECK-NEXT: --> {(4 + %begin),+,4}<nuw><%for.body.i.i>
  59. %cmp.i.i = icmp eq i32* %ptrincdec.i.i, %end
  60. br i1 %cmp.i.i, label %for.cond.for.end_crit_edge.i.i, label %for.body.i.i
  61. for.cond.for.end_crit_edge.i.i: ; preds = %for.body.i.i
  62. br label %_ZSt4fillIPiiEvT_S1_RKT0_.exit
  63. _ZSt4fillIPiiEvT_S1_RKT0_.exit: ; preds = %entry, %for.cond.for.end_crit_edge.i.i
  64. ret void
  65. }
  66. ; Various checks for inbounds geps.
  67. define void @test3(i32* %begin, i32* %end) nounwind ssp {
  68. entry:
  69. %cmp7.i.i = icmp eq i32* %begin, %end
  70. br i1 %cmp7.i.i, label %_ZSt4fillIPiiEvT_S1_RKT0_.exit, label %for.body.i.i
  71. for.body.i.i: ; preds = %entry, %for.body.i.i
  72. %indvar.i.i = phi i64 [ %tmp, %for.body.i.i ], [ 0, %entry ]
  73. ; CHECK: %indvar.i.i
  74. ; CHECK: {0,+,1}<nuw><nsw><%for.body.i.i>
  75. %tmp = add nsw i64 %indvar.i.i, 1
  76. ; CHECK: %tmp =
  77. ; CHECK: {1,+,1}<nuw><nsw><%for.body.i.i>
  78. %ptrincdec.i.i = getelementptr inbounds i32, i32* %begin, i64 %tmp
  79. ; CHECK: %ptrincdec.i.i =
  80. ; CHECK: {(4 + %begin),+,4}<nsw><%for.body.i.i>
  81. %__first.addr.08.i.i = getelementptr inbounds i32, i32* %begin, i64 %indvar.i.i
  82. ; CHECK: %__first.addr.08.i.i
  83. ; CHECK: {%begin,+,4}<nsw><%for.body.i.i>
  84. store i32 0, i32* %__first.addr.08.i.i, align 4
  85. %cmp.i.i = icmp eq i32* %ptrincdec.i.i, %end
  86. br i1 %cmp.i.i, label %_ZSt4fillIPiiEvT_S1_RKT0_.exit, label %for.body.i.i
  87. ; CHECK: Loop %for.body.i.i: backedge-taken count is ((-4 + (-1 * %begin) + %end) /u 4)
  88. ; CHECK: Loop %for.body.i.i: max backedge-taken count is ((-4 + (-1 * %begin) + %end) /u 4)
  89. _ZSt4fillIPiiEvT_S1_RKT0_.exit: ; preds = %for.body.i.i, %entry
  90. ret void
  91. }
  92. ; A single AddExpr exists for (%a + %b), which is not always <nsw>.
  93. ; CHECK: @addnsw
  94. ; CHECK-NOT: --> (%a + %b)<nsw>
  95. define i32 @addnsw(i32 %a, i32 %b) nounwind ssp {
  96. entry:
  97. %tmp = add i32 %a, %b
  98. %cmp = icmp sgt i32 %tmp, 0
  99. br i1 %cmp, label %greater, label %exit
  100. greater:
  101. %tmp2 = add nsw i32 %a, %b
  102. br label %exit
  103. exit:
  104. %result = phi i32 [ %a, %entry ], [ %tmp2, %greater ]
  105. ret i32 %result
  106. }
  107. ; CHECK-LABEL: PR12375
  108. ; CHECK: --> {(4 + %arg),+,4}<nuw><%bb1>{{ U: [^ ]+ S: [^ ]+}}{{ *}}Exits: (8 + %arg)<nsw>
  109. define i32 @PR12375(i32* readnone %arg) {
  110. bb:
  111. %tmp = getelementptr inbounds i32, i32* %arg, i64 2
  112. br label %bb1
  113. bb1: ; preds = %bb1, %bb
  114. %tmp2 = phi i32* [ %arg, %bb ], [ %tmp5, %bb1 ]
  115. %tmp3 = phi i32 [ 0, %bb ], [ %tmp4, %bb1 ]
  116. %tmp4 = add nsw i32 %tmp3, 1
  117. %tmp5 = getelementptr inbounds i32, i32* %tmp2, i64 1
  118. %tmp6 = icmp ult i32* %tmp5, %tmp
  119. br i1 %tmp6, label %bb1, label %bb7
  120. bb7: ; preds = %bb1
  121. ret i32 %tmp4
  122. }
  123. ; CHECK-LABEL: PR12376
  124. ; CHECK: --> {(4 + %arg),+,4}<nuw><%bb2>{{ U: [^ ]+ S: [^ ]+}}{{ *}}Exits: (4 + (4 * ((3 + (-1 * %arg) + (%arg umax %arg1)) /u 4)) + %arg)
  125. define void @PR12376(i32* nocapture %arg, i32* nocapture %arg1) {
  126. bb:
  127. br label %bb2
  128. bb2: ; preds = %bb2, %bb
  129. %tmp = phi i32* [ %arg, %bb ], [ %tmp4, %bb2 ]
  130. %tmp3 = icmp ult i32* %tmp, %arg1
  131. %tmp4 = getelementptr inbounds i32, i32* %tmp, i64 1
  132. br i1 %tmp3, label %bb2, label %bb5
  133. bb5: ; preds = %bb2
  134. ret void
  135. }
  136. declare void @f(i32)
  137. ; CHECK-LABEL: nswnowrap
  138. ; CHECK: --> {(1 + %v),+,1}<nsw><%for.body>{{ U: [^ ]+ S: [^ ]+}}{{ *}}Exits: (2 + %v)
  139. define void @nswnowrap(i32 %v) {
  140. entry:
  141. %add = add nsw i32 %v, 1
  142. br label %for.body
  143. for.body:
  144. %i.04 = phi i32 [ %v, %entry ], [ %inc, %for.body ]
  145. %inc = add nsw i32 %i.04, 1
  146. tail call void @f(i32 %i.04)
  147. %cmp = icmp slt i32 %i.04, %add
  148. br i1 %cmp, label %for.body, label %for.end
  149. for.end:
  150. ret void
  151. }