xor.ll 6.6 KB

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  1. ; This test makes sure that these instructions are properly eliminated.
  2. ;
  3. ; RUN: opt < %s -instcombine -S | \
  4. ; RUN: FileCheck %s
  5. ; END.
  6. @G1 = global i32 0 ; <i32*> [#uses=1]
  7. @G2 = global i32 0 ; <i32*> [#uses=1]
  8. define i1 @test0(i1 %A) {
  9. ; CHECK-LABEL: @test0(
  10. ; CHECK-NEXT: ret i1 %A
  11. %B = xor i1 %A, false ; <i1> [#uses=1]
  12. ret i1 %B
  13. }
  14. define i32 @test1(i32 %A) {
  15. ; CHECK-LABEL: @test1(
  16. ; CHECK-NEXT: ret i32 %A
  17. %B = xor i32 %A, 0 ; <i32> [#uses=1]
  18. ret i32 %B
  19. }
  20. define i1 @test2(i1 %A) {
  21. ; CHECK-LABEL: @test2(
  22. ; CHECK-NEXT: ret i1 false
  23. %B = xor i1 %A, %A ; <i1> [#uses=1]
  24. ret i1 %B
  25. }
  26. define i32 @test3(i32 %A) {
  27. ; CHECK-LABEL: @test3(
  28. ; CHECK-NEXT: ret i32 0
  29. %B = xor i32 %A, %A ; <i32> [#uses=1]
  30. ret i32 %B
  31. }
  32. define i32 @test4(i32 %A) {
  33. ; CHECK-LABEL: @test4(
  34. ; CHECK-NEXT: ret i32 -1
  35. %NotA = xor i32 -1, %A ; <i32> [#uses=1]
  36. %B = xor i32 %A, %NotA ; <i32> [#uses=1]
  37. ret i32 %B
  38. }
  39. define i32 @test5(i32 %A) {
  40. ; CHECK-LABEL: @test5(
  41. ; CHECK-NEXT: %1 = and i32 %A, -124
  42. ; CHECK-NEXT: ret i32 %1
  43. %t1 = or i32 %A, 123 ; <i32> [#uses=1]
  44. %r = xor i32 %t1, 123 ; <i32> [#uses=1]
  45. ret i32 %r
  46. }
  47. define i8 @test6(i8 %A) {
  48. ; CHECK-LABEL: @test6(
  49. ; CHECK-NEXT: ret i8 %A
  50. %B = xor i8 %A, 17 ; <i8> [#uses=1]
  51. %C = xor i8 %B, 17 ; <i8> [#uses=1]
  52. ret i8 %C
  53. }
  54. define i32 @test7(i32 %A, i32 %B) {
  55. ; CHECK-LABEL: @test7(
  56. ; CHECK-NEXT: %A1 = and i32 %A, 7
  57. ; CHECK-NEXT: %B1 = and i32 %B, 128
  58. ; CHECK-NEXT: %C1.1 = or i32 %A1, %B1
  59. ; CHECK-NEXT: ret i32 %C1.1
  60. %A1 = and i32 %A, 7 ; <i32> [#uses=1]
  61. %B1 = and i32 %B, 128 ; <i32> [#uses=1]
  62. %C1 = xor i32 %A1, %B1 ; <i32> [#uses=1]
  63. ret i32 %C1
  64. }
  65. define i8 @test8(i1 %c) {
  66. ; CHECK-LABEL: @test8(
  67. ; CHECK: br i1 %c, label %False, label %True
  68. %d = xor i1 %c, true ; <i1> [#uses=1]
  69. br i1 %d, label %True, label %False
  70. True: ; preds = %0
  71. ret i8 1
  72. False: ; preds = %0
  73. ret i8 3
  74. }
  75. define i1 @test9(i8 %A) {
  76. ; CHECK-LABEL: @test9(
  77. ; CHECK-NEXT: %C = icmp eq i8 %A, 89
  78. ; CHECK-NEXT: ret i1 %C
  79. %B = xor i8 %A, 123 ; <i8> [#uses=1]
  80. %C = icmp eq i8 %B, 34 ; <i1> [#uses=1]
  81. ret i1 %C
  82. }
  83. define i8 @test10(i8 %A) {
  84. ; CHECK-LABEL: @test10(
  85. ; CHECK-NEXT: %B = and i8 %A, 3
  86. ; CHECK-NEXT: %C.1 = or i8 %B, 4
  87. ; CHECK-NEXT: ret i8 %C.1
  88. %B = and i8 %A, 3 ; <i8> [#uses=1]
  89. %C = xor i8 %B, 4 ; <i8> [#uses=1]
  90. ret i8 %C
  91. }
  92. define i8 @test11(i8 %A) {
  93. ; CHECK-LABEL: @test11(
  94. ; CHECK-NEXT: %B = and i8 %A, -13
  95. ; CHECK-NEXT: %1 = or i8 %B, 8
  96. ; CHECK-NEXT: ret i8 %1
  97. %B = or i8 %A, 12 ; <i8> [#uses=1]
  98. %C = xor i8 %B, 4 ; <i8> [#uses=1]
  99. ret i8 %C
  100. }
  101. define i1 @test12(i8 %A) {
  102. ; CHECK-LABEL: @test12(
  103. ; CHECK-NEXT: %c = icmp ne i8 %A, 4
  104. ; CHECK-NEXT: ret i1 %c
  105. %B = xor i8 %A, 4 ; <i8> [#uses=1]
  106. %c = icmp ne i8 %B, 0 ; <i1> [#uses=1]
  107. ret i1 %c
  108. }
  109. define i1 @test13(i8 %A, i8 %B) {
  110. ; CHECK-LABEL: @test13(
  111. ; CHECK-NEXT: %1 = icmp ne i8 %A, %B
  112. ; CHECK-NEXT: ret i1 %1
  113. %C = icmp ult i8 %A, %B ; <i1> [#uses=1]
  114. %D = icmp ugt i8 %A, %B ; <i1> [#uses=1]
  115. %E = xor i1 %C, %D ; <i1> [#uses=1]
  116. ret i1 %E
  117. }
  118. define i1 @test14(i8 %A, i8 %B) {
  119. ; CHECK-LABEL: @test14(
  120. ; CHECK-NEXT: ret i1 true
  121. %C = icmp eq i8 %A, %B ; <i1> [#uses=1]
  122. %D = icmp ne i8 %B, %A ; <i1> [#uses=1]
  123. %E = xor i1 %C, %D ; <i1> [#uses=1]
  124. ret i1 %E
  125. }
  126. define i32 @test15(i32 %A) {
  127. ; CHECK-LABEL: @test15(
  128. ; CHECK-NEXT: %C = sub i32 0, %A
  129. ; CHECK-NEXT: ret i32 %C
  130. %B = add i32 %A, -1 ; <i32> [#uses=1]
  131. %C = xor i32 %B, -1 ; <i32> [#uses=1]
  132. ret i32 %C
  133. }
  134. define i32 @test16(i32 %A) {
  135. ; CHECK-LABEL: @test16(
  136. ; CHECK-NEXT: %C = sub i32 -124, %A
  137. ; CHECK-NEXT: ret i32 %C
  138. %B = add i32 %A, 123 ; <i32> [#uses=1]
  139. %C = xor i32 %B, -1 ; <i32> [#uses=1]
  140. ret i32 %C
  141. }
  142. define i32 @test17(i32 %A) {
  143. ; CHECK-LABEL: @test17(
  144. ; CHECK-NEXT: %C = add i32 %A, -124
  145. ; CHECK-NEXT: ret i32 %C
  146. %B = sub i32 123, %A ; <i32> [#uses=1]
  147. %C = xor i32 %B, -1 ; <i32> [#uses=1]
  148. ret i32 %C
  149. }
  150. define i32 @test18(i32 %A) {
  151. ; CHECK-LABEL: @test18(
  152. ; CHECK-NEXT: %C = add i32 %A, 124
  153. ; CHECK-NEXT: ret i32 %C
  154. %B = xor i32 %A, -1 ; <i32> [#uses=1]
  155. %C = sub i32 123, %B ; <i32> [#uses=1]
  156. ret i32 %C
  157. }
  158. define i32 @test19(i32 %A, i32 %B) {
  159. ; CHECK-LABEL: @test19(
  160. ; CHECK-NEXT: ret i32 %B
  161. %C = xor i32 %A, %B ; <i32> [#uses=1]
  162. %D = xor i32 %C, %A ; <i32> [#uses=1]
  163. ret i32 %D
  164. }
  165. define void @test20(i32 %A, i32 %B) {
  166. ; CHECK-LABEL: @test20(
  167. ; CHECK-NEXT: store i32 %B, i32* @G1
  168. ; CHECK-NEXT: store i32 %A, i32* @G2
  169. ; CHECK-NEXT: ret void
  170. %tmp.2 = xor i32 %B, %A ; <i32> [#uses=2]
  171. %tmp.5 = xor i32 %tmp.2, %B ; <i32> [#uses=2]
  172. %tmp.8 = xor i32 %tmp.5, %tmp.2 ; <i32> [#uses=1]
  173. store i32 %tmp.8, i32* @G1
  174. store i32 %tmp.5, i32* @G2
  175. ret void
  176. }
  177. define i32 @test21(i1 %C, i32 %A, i32 %B) {
  178. ; CHECK-LABEL: @test21(
  179. ; CHECK-NEXT: %D = select i1 %C, i32 %B, i32 %A
  180. ; CHECK-NEXT: ret i32 %D
  181. %C2 = xor i1 %C, true ; <i1> [#uses=1]
  182. %D = select i1 %C2, i32 %A, i32 %B ; <i32> [#uses=1]
  183. ret i32 %D
  184. }
  185. define i32 @test22(i1 %X) {
  186. ; CHECK-LABEL: @test22(
  187. ; CHECK-NEXT: %1 = zext i1 %X to i32
  188. ; CHECK-NEXT: ret i32 %1
  189. %Y = xor i1 %X, true ; <i1> [#uses=1]
  190. %Z = zext i1 %Y to i32 ; <i32> [#uses=1]
  191. %Q = xor i32 %Z, 1 ; <i32> [#uses=1]
  192. ret i32 %Q
  193. }
  194. define i1 @test23(i32 %a, i32 %b) {
  195. ; CHECK-LABEL: @test23(
  196. ; CHECK-NEXT: %tmp.4 = icmp eq i32 %b, 0
  197. ; CHECK-NEXT: ret i1 %tmp.4
  198. %tmp.2 = xor i32 %b, %a ; <i32> [#uses=1]
  199. %tmp.4 = icmp eq i32 %tmp.2, %a ; <i1> [#uses=1]
  200. ret i1 %tmp.4
  201. }
  202. define i1 @test24(i32 %c, i32 %d) {
  203. ; CHECK-LABEL: @test24(
  204. ; CHECK-NEXT: %tmp.4 = icmp ne i32 %d, 0
  205. ; CHECK-NEXT: ret i1 %tmp.4
  206. %tmp.2 = xor i32 %d, %c ; <i32> [#uses=1]
  207. %tmp.4 = icmp ne i32 %tmp.2, %c ; <i1> [#uses=1]
  208. ret i1 %tmp.4
  209. }
  210. define i32 @test25(i32 %g, i32 %h) {
  211. ; CHECK-LABEL: @test25(
  212. ; CHECK-NEXT: %tmp4 = and i32 %h, %g
  213. ; CHECK-NEXT: ret i32 %tmp4
  214. %h2 = xor i32 %h, -1 ; <i32> [#uses=1]
  215. %tmp2 = and i32 %h2, %g ; <i32> [#uses=1]
  216. %tmp4 = xor i32 %tmp2, %g ; <i32> [#uses=1]
  217. ret i32 %tmp4
  218. }
  219. define i32 @test26(i32 %a, i32 %b) {
  220. ; CHECK-LABEL: @test26(
  221. ; CHECK-NEXT: %tmp4 = and i32 %a, %b
  222. ; CHECK-NEXT: ret i32 %tmp4
  223. %b2 = xor i32 %b, -1 ; <i32> [#uses=1]
  224. %tmp2 = xor i32 %a, %b2 ; <i32> [#uses=1]
  225. %tmp4 = and i32 %tmp2, %a ; <i32> [#uses=1]
  226. ret i32 %tmp4
  227. }
  228. define i32 @test27(i32 %b, i32 %c, i32 %d) {
  229. ; CHECK-LABEL: @test27(
  230. ; CHECK-NEXT: %tmp = icmp eq i32 %b, %c
  231. ; CHECK-NEXT: %tmp6 = zext i1 %tmp to i32
  232. ; CHECK-NEXT: ret i32 %tmp6
  233. %tmp2 = xor i32 %d, %b ; <i32> [#uses=1]
  234. %tmp5 = xor i32 %d, %c ; <i32> [#uses=1]
  235. %tmp = icmp eq i32 %tmp2, %tmp5 ; <i1> [#uses=1]
  236. %tmp6 = zext i1 %tmp to i32 ; <i32> [#uses=1]
  237. ret i32 %tmp6
  238. }
  239. define i32 @test28(i32 %indvar) {
  240. ; CHECK-LABEL: @test28(
  241. ; CHECK-NEXT: %tmp214 = add i32 %indvar, 1
  242. ; CHECK-NEXT: ret i32 %tmp214
  243. %tmp7 = add i32 %indvar, -2147483647 ; <i32> [#uses=1]
  244. %tmp214 = xor i32 %tmp7, -2147483648 ; <i32> [#uses=1]
  245. ret i32 %tmp214
  246. }