exact.ll 3.5 KB

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  1. ; RUN: opt < %s -instcombine -S | FileCheck %s
  2. ; CHECK-LABEL: @sdiv1(
  3. ; CHECK: sdiv i32 %x, 8
  4. define i32 @sdiv1(i32 %x) {
  5. %y = sdiv i32 %x, 8
  6. ret i32 %y
  7. }
  8. ; CHECK-LABEL: @sdiv2(
  9. ; CHECK: ashr exact i32 %x, 3
  10. define i32 @sdiv2(i32 %x) {
  11. %y = sdiv exact i32 %x, 8
  12. ret i32 %y
  13. }
  14. ; CHECK-LABEL: @sdiv3(
  15. ; CHECK: %y = srem i32 %x, 3
  16. ; CHECK: %z = sub i32 %x, %y
  17. ; CHECK: ret i32 %z
  18. define i32 @sdiv3(i32 %x) {
  19. %y = sdiv i32 %x, 3
  20. %z = mul i32 %y, 3
  21. ret i32 %z
  22. }
  23. ; CHECK-LABEL: @sdiv4(
  24. ; CHECK: ret i32 %x
  25. define i32 @sdiv4(i32 %x) {
  26. %y = sdiv exact i32 %x, 3
  27. %z = mul i32 %y, 3
  28. ret i32 %z
  29. }
  30. ; CHECK: i32 @sdiv5
  31. ; CHECK: %y = srem i32 %x, 3
  32. ; CHECK: %z = sub i32 %y, %x
  33. ; CHECK: ret i32 %z
  34. define i32 @sdiv5(i32 %x) {
  35. %y = sdiv i32 %x, 3
  36. %z = mul i32 %y, -3
  37. ret i32 %z
  38. }
  39. ; CHECK-LABEL: @sdiv6(
  40. ; CHECK: %z = sub i32 0, %x
  41. ; CHECK: ret i32 %z
  42. define i32 @sdiv6(i32 %x) {
  43. %y = sdiv exact i32 %x, 3
  44. %z = mul i32 %y, -3
  45. ret i32 %z
  46. }
  47. ; CHECK-LABEL: @udiv1(
  48. ; CHECK: ret i32 %x
  49. define i32 @udiv1(i32 %x, i32 %w) {
  50. %y = udiv exact i32 %x, %w
  51. %z = mul i32 %y, %w
  52. ret i32 %z
  53. }
  54. ; CHECK-LABEL: @udiv2(
  55. ; CHECK: %z = lshr exact i32 %x, %w
  56. ; CHECK: ret i32 %z
  57. define i32 @udiv2(i32 %x, i32 %w) {
  58. %y = shl i32 1, %w
  59. %z = udiv exact i32 %x, %y
  60. ret i32 %z
  61. }
  62. ; CHECK-LABEL: @ashr1(
  63. ; CHECK: %B = ashr exact i64 %A, 2
  64. ; CHECK: ret i64 %B
  65. define i64 @ashr1(i64 %X) nounwind {
  66. %A = shl i64 %X, 8
  67. %B = ashr i64 %A, 2 ; X/4
  68. ret i64 %B
  69. }
  70. ; PR9120
  71. ; CHECK-LABEL: @ashr_icmp1(
  72. ; CHECK: %B = icmp eq i64 %X, 0
  73. ; CHECK: ret i1 %B
  74. define i1 @ashr_icmp1(i64 %X) nounwind {
  75. %A = ashr exact i64 %X, 2 ; X/4
  76. %B = icmp eq i64 %A, 0
  77. ret i1 %B
  78. }
  79. ; CHECK-LABEL: @ashr_icmp2(
  80. ; CHECK: %Z = icmp slt i64 %X, 16
  81. ; CHECK: ret i1 %Z
  82. define i1 @ashr_icmp2(i64 %X) nounwind {
  83. %Y = ashr exact i64 %X, 2 ; x / 4
  84. %Z = icmp slt i64 %Y, 4 ; x < 16
  85. ret i1 %Z
  86. }
  87. ; PR9998
  88. ; Make sure we don't transform the ashr here into an sdiv
  89. ; CHECK-LABEL: @pr9998(
  90. ; CHECK: [[BIT:%[A-Za-z0-9.]+]] = and i32 %V, 1
  91. ; CHECK-NEXT: [[CMP:%[A-Za-z0-9.]+]] = icmp ne i32 [[BIT]], 0
  92. ; CHECK-NEXT: ret i1 [[CMP]]
  93. define i1 @pr9998(i32 %V) nounwind {
  94. entry:
  95. %W = shl i32 %V, 31
  96. %X = ashr exact i32 %W, 31
  97. %Y = sext i32 %X to i64
  98. %Z = icmp ugt i64 %Y, 7297771788697658747
  99. ret i1 %Z
  100. }
  101. ; CHECK-LABEL: @udiv_icmp1(
  102. ; CHECK: icmp ne i64 %X, 0
  103. define i1 @udiv_icmp1(i64 %X) nounwind {
  104. %A = udiv exact i64 %X, 5 ; X/5
  105. %B = icmp ne i64 %A, 0
  106. ret i1 %B
  107. }
  108. ; CHECK-LABEL: @sdiv_icmp1(
  109. ; CHECK: icmp eq i64 %X, 0
  110. define i1 @sdiv_icmp1(i64 %X) nounwind {
  111. %A = sdiv exact i64 %X, 5 ; X/5 == 0 --> x == 0
  112. %B = icmp eq i64 %A, 0
  113. ret i1 %B
  114. }
  115. ; CHECK-LABEL: @sdiv_icmp2(
  116. ; CHECK: icmp eq i64 %X, 5
  117. define i1 @sdiv_icmp2(i64 %X) nounwind {
  118. %A = sdiv exact i64 %X, 5 ; X/5 == 1 --> x == 5
  119. %B = icmp eq i64 %A, 1
  120. ret i1 %B
  121. }
  122. ; CHECK-LABEL: @sdiv_icmp3(
  123. ; CHECK: icmp eq i64 %X, -5
  124. define i1 @sdiv_icmp3(i64 %X) nounwind {
  125. %A = sdiv exact i64 %X, 5 ; X/5 == -1 --> x == -5
  126. %B = icmp eq i64 %A, -1
  127. ret i1 %B
  128. }
  129. ; CHECK-LABEL: @sdiv_icmp4(
  130. ; CHECK: icmp eq i64 %X, 0
  131. define i1 @sdiv_icmp4(i64 %X) nounwind {
  132. %A = sdiv exact i64 %X, -5 ; X/-5 == 0 --> x == 0
  133. %B = icmp eq i64 %A, 0
  134. ret i1 %B
  135. }
  136. ; CHECK-LABEL: @sdiv_icmp5(
  137. ; CHECK: icmp eq i64 %X, -5
  138. define i1 @sdiv_icmp5(i64 %X) nounwind {
  139. %A = sdiv exact i64 %X, -5 ; X/-5 == 1 --> x == -5
  140. %B = icmp eq i64 %A, 1
  141. ret i1 %B
  142. }
  143. ; CHECK-LABEL: @sdiv_icmp6(
  144. ; CHECK: icmp eq i64 %X, 5
  145. define i1 @sdiv_icmp6(i64 %X) nounwind {
  146. %A = sdiv exact i64 %X, -5 ; X/-5 == 1 --> x == 5
  147. %B = icmp eq i64 %A, -1
  148. ret i1 %B
  149. }