switch_create.ll 17 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445446447448449450451452453454455456457458459460461462463464465466467468469470471472473474475476477478479480481482483484485486487488489490491492493494495496497498499500501502503504505506507508509510511512513514515516517518519520521522523524525526527528529530531532533534535536537538539540541542543544545546547548549550551552553554555556
  1. ; RUN: opt -S -simplifycfg < %s | FileCheck -check-prefix=CHECK %s
  2. ; RUN: opt -S -default-data-layout="p:32:32-p1:16:16" -simplifycfg < %s | FileCheck -check-prefix=CHECK -check-prefix=DL %s
  3. declare void @foo1()
  4. declare void @foo2()
  5. define void @test1(i32 %V) {
  6. %C1 = icmp eq i32 %V, 4 ; <i1> [#uses=1]
  7. %C2 = icmp eq i32 %V, 17 ; <i1> [#uses=1]
  8. %CN = or i1 %C1, %C2 ; <i1> [#uses=1]
  9. br i1 %CN, label %T, label %F
  10. T: ; preds = %0
  11. call void @foo1( )
  12. ret void
  13. F: ; preds = %0
  14. call void @foo2( )
  15. ret void
  16. ; CHECK-LABEL: @test1(
  17. ; CHECK: switch i32 %V, label %F [
  18. ; CHECK: i32 17, label %T
  19. ; CHECK: i32 4, label %T
  20. ; CHECK: ]
  21. }
  22. define void @test1_ptr(i32* %V) {
  23. %C1 = icmp eq i32* %V, inttoptr (i32 4 to i32*)
  24. %C2 = icmp eq i32* %V, inttoptr (i32 17 to i32*)
  25. %CN = or i1 %C1, %C2 ; <i1> [#uses=1]
  26. br i1 %CN, label %T, label %F
  27. T: ; preds = %0
  28. call void @foo1( )
  29. ret void
  30. F: ; preds = %0
  31. call void @foo2( )
  32. ret void
  33. ; CHECK-LABEL: @test1_ptr(
  34. ; DL: %magicptr = ptrtoint i32* %V to i32
  35. ; DL: switch i32 %magicptr, label %F [
  36. ; DL: i32 17, label %T
  37. ; DL: i32 4, label %T
  38. ; DL: ]
  39. }
  40. define void @test1_ptr_as1(i32 addrspace(1)* %V) {
  41. %C1 = icmp eq i32 addrspace(1)* %V, inttoptr (i32 4 to i32 addrspace(1)*)
  42. %C2 = icmp eq i32 addrspace(1)* %V, inttoptr (i32 17 to i32 addrspace(1)*)
  43. %CN = or i1 %C1, %C2 ; <i1> [#uses=1]
  44. br i1 %CN, label %T, label %F
  45. T: ; preds = %0
  46. call void @foo1( )
  47. ret void
  48. F: ; preds = %0
  49. call void @foo2( )
  50. ret void
  51. ; CHECK-LABEL: @test1_ptr_as1(
  52. ; DL: %magicptr = ptrtoint i32 addrspace(1)* %V to i16
  53. ; DL: switch i16 %magicptr, label %F [
  54. ; DL: i16 17, label %T
  55. ; DL: i16 4, label %T
  56. ; DL: ]
  57. }
  58. define void @test2(i32 %V) {
  59. %C1 = icmp ne i32 %V, 4 ; <i1> [#uses=1]
  60. %C2 = icmp ne i32 %V, 17 ; <i1> [#uses=1]
  61. %CN = and i1 %C1, %C2 ; <i1> [#uses=1]
  62. br i1 %CN, label %T, label %F
  63. T: ; preds = %0
  64. call void @foo1( )
  65. ret void
  66. F: ; preds = %0
  67. call void @foo2( )
  68. ret void
  69. ; CHECK-LABEL: @test2(
  70. ; CHECK: switch i32 %V, label %T [
  71. ; CHECK: i32 17, label %F
  72. ; CHECK: i32 4, label %F
  73. ; CHECK: ]
  74. }
  75. define void @test3(i32 %V) {
  76. %C1 = icmp eq i32 %V, 4 ; <i1> [#uses=1]
  77. br i1 %C1, label %T, label %N
  78. N: ; preds = %0
  79. %C2 = icmp eq i32 %V, 17 ; <i1> [#uses=1]
  80. br i1 %C2, label %T, label %F
  81. T: ; preds = %N, %0
  82. call void @foo1( )
  83. ret void
  84. F: ; preds = %N
  85. call void @foo2( )
  86. ret void
  87. ; CHECK-LABEL: @test3(
  88. ; CHECK: switch i32 %V, label %F [
  89. ; CHECK: i32 4, label %T
  90. ; CHECK: i32 17, label %T
  91. ; CHECK: ]
  92. }
  93. define i32 @test4(i8 zeroext %c) nounwind ssp noredzone {
  94. entry:
  95. %cmp = icmp eq i8 %c, 62
  96. br i1 %cmp, label %lor.end, label %lor.lhs.false
  97. lor.lhs.false: ; preds = %entry
  98. %cmp4 = icmp eq i8 %c, 34
  99. br i1 %cmp4, label %lor.end, label %lor.rhs
  100. lor.rhs: ; preds = %lor.lhs.false
  101. %cmp8 = icmp eq i8 %c, 92
  102. br label %lor.end
  103. lor.end: ; preds = %lor.rhs, %lor.lhs.false, %entry
  104. %0 = phi i1 [ true, %lor.lhs.false ], [ true, %entry ], [ %cmp8, %lor.rhs ]
  105. %lor.ext = zext i1 %0 to i32
  106. ret i32 %lor.ext
  107. ; CHECK-LABEL: @test4(
  108. ; CHECK: switch i8 %c, label %lor.rhs [
  109. ; CHECK: i8 62, label %lor.end
  110. ; CHECK: i8 34, label %lor.end
  111. ; CHECK: i8 92, label %lor.end
  112. ; CHECK: ]
  113. }
  114. define i32 @test5(i8 zeroext %c) nounwind ssp noredzone {
  115. entry:
  116. switch i8 %c, label %lor.rhs [
  117. i8 62, label %lor.end
  118. i8 34, label %lor.end
  119. i8 92, label %lor.end
  120. ]
  121. lor.rhs: ; preds = %entry
  122. %V = icmp eq i8 %c, 92
  123. br label %lor.end
  124. lor.end: ; preds = %entry, %entry, %entry, %lor.rhs
  125. %0 = phi i1 [ true, %entry ], [ %V, %lor.rhs ], [ true, %entry ], [ true, %entry ]
  126. %lor.ext = zext i1 %0 to i32
  127. ret i32 %lor.ext
  128. ; CHECK-LABEL: @test5(
  129. ; CHECK: switch i8 %c, label %lor.rhs [
  130. ; CHECK: i8 62, label %lor.end
  131. ; CHECK: i8 34, label %lor.end
  132. ; CHECK: i8 92, label %lor.end
  133. ; CHECK: ]
  134. }
  135. define i1 @test6({ i32, i32 }* %I) {
  136. entry:
  137. %tmp.1.i = getelementptr { i32, i32 }, { i32, i32 }* %I, i64 0, i32 1 ; <i32*> [#uses=1]
  138. %tmp.2.i = load i32, i32* %tmp.1.i ; <i32> [#uses=6]
  139. %tmp.2 = icmp eq i32 %tmp.2.i, 14 ; <i1> [#uses=1]
  140. br i1 %tmp.2, label %shortcirc_done.4, label %shortcirc_next.0
  141. shortcirc_next.0: ; preds = %entry
  142. %tmp.6 = icmp eq i32 %tmp.2.i, 15 ; <i1> [#uses=1]
  143. br i1 %tmp.6, label %shortcirc_done.4, label %shortcirc_next.1
  144. shortcirc_next.1: ; preds = %shortcirc_next.0
  145. %tmp.11 = icmp eq i32 %tmp.2.i, 16 ; <i1> [#uses=1]
  146. br i1 %tmp.11, label %shortcirc_done.4, label %shortcirc_next.2
  147. shortcirc_next.2: ; preds = %shortcirc_next.1
  148. %tmp.16 = icmp eq i32 %tmp.2.i, 17 ; <i1> [#uses=1]
  149. br i1 %tmp.16, label %shortcirc_done.4, label %shortcirc_next.3
  150. shortcirc_next.3: ; preds = %shortcirc_next.2
  151. %tmp.21 = icmp eq i32 %tmp.2.i, 18 ; <i1> [#uses=1]
  152. br i1 %tmp.21, label %shortcirc_done.4, label %shortcirc_next.4
  153. shortcirc_next.4: ; preds = %shortcirc_next.3
  154. %tmp.26 = icmp eq i32 %tmp.2.i, 19 ; <i1> [#uses=1]
  155. br label %UnifiedReturnBlock
  156. shortcirc_done.4: ; preds = %shortcirc_next.3, %shortcirc_next.2, %shortcirc_next.1, %shortcirc_next.0, %entry
  157. br label %UnifiedReturnBlock
  158. UnifiedReturnBlock: ; preds = %shortcirc_done.4, %shortcirc_next.4
  159. %UnifiedRetVal = phi i1 [ %tmp.26, %shortcirc_next.4 ], [ true, %shortcirc_done.4 ] ; <i1> [#uses=1]
  160. ret i1 %UnifiedRetVal
  161. ; CHECK-LABEL: @test6(
  162. ; CHECK: %tmp.2.i.off = add i32 %tmp.2.i, -14
  163. ; CHECK: %switch = icmp ult i32 %tmp.2.i.off, 6
  164. }
  165. define void @test7(i8 zeroext %c, i32 %x) nounwind ssp noredzone {
  166. entry:
  167. %cmp = icmp ult i32 %x, 32
  168. %cmp4 = icmp eq i8 %c, 97
  169. %or.cond = or i1 %cmp, %cmp4
  170. %cmp9 = icmp eq i8 %c, 99
  171. %or.cond11 = or i1 %or.cond, %cmp9
  172. br i1 %or.cond11, label %if.then, label %if.end
  173. if.then: ; preds = %entry
  174. tail call void @foo1() nounwind noredzone
  175. ret void
  176. if.end: ; preds = %entry
  177. ret void
  178. ; CHECK-LABEL: @test7(
  179. ; CHECK: %cmp = icmp ult i32 %x, 32
  180. ; CHECK: br i1 %cmp, label %if.then, label %switch.early.test
  181. ; CHECK: switch.early.test:
  182. ; CHECK: switch i8 %c, label %if.end [
  183. ; CHECK: i8 99, label %if.then
  184. ; CHECK: i8 97, label %if.then
  185. ; CHECK: ]
  186. }
  187. define i32 @test8(i8 zeroext %c, i32 %x, i1 %C) nounwind ssp noredzone {
  188. entry:
  189. br i1 %C, label %N, label %if.then
  190. N:
  191. %cmp = icmp ult i32 %x, 32
  192. %cmp4 = icmp eq i8 %c, 97
  193. %or.cond = or i1 %cmp, %cmp4
  194. %cmp9 = icmp eq i8 %c, 99
  195. %or.cond11 = or i1 %or.cond, %cmp9
  196. br i1 %or.cond11, label %if.then, label %if.end
  197. if.then: ; preds = %entry
  198. %A = phi i32 [0, %entry], [42, %N]
  199. tail call void @foo1() nounwind noredzone
  200. ret i32 %A
  201. if.end: ; preds = %entry
  202. ret i32 0
  203. ; CHECK-LABEL: @test8(
  204. ; CHECK: switch.early.test:
  205. ; CHECK: switch i8 %c, label %if.end [
  206. ; CHECK: i8 99, label %if.then
  207. ; CHECK: i8 97, label %if.then
  208. ; CHECK: ]
  209. ; CHECK: %A = phi i32 [ 0, %entry ], [ 42, %switch.early.test ], [ 42, %N ], [ 42, %switch.early.test ]
  210. }
  211. ;; This is "Example 7" from http://blog.regehr.org/archives/320
  212. define i32 @test9(i8 zeroext %c) nounwind ssp noredzone {
  213. entry:
  214. %cmp = icmp ult i8 %c, 33
  215. br i1 %cmp, label %lor.end, label %lor.lhs.false
  216. lor.lhs.false: ; preds = %entry
  217. %cmp4 = icmp eq i8 %c, 46
  218. br i1 %cmp4, label %lor.end, label %lor.lhs.false6
  219. lor.lhs.false6: ; preds = %lor.lhs.false
  220. %cmp9 = icmp eq i8 %c, 44
  221. br i1 %cmp9, label %lor.end, label %lor.lhs.false11
  222. lor.lhs.false11: ; preds = %lor.lhs.false6
  223. %cmp14 = icmp eq i8 %c, 58
  224. br i1 %cmp14, label %lor.end, label %lor.lhs.false16
  225. lor.lhs.false16: ; preds = %lor.lhs.false11
  226. %cmp19 = icmp eq i8 %c, 59
  227. br i1 %cmp19, label %lor.end, label %lor.lhs.false21
  228. lor.lhs.false21: ; preds = %lor.lhs.false16
  229. %cmp24 = icmp eq i8 %c, 60
  230. br i1 %cmp24, label %lor.end, label %lor.lhs.false26
  231. lor.lhs.false26: ; preds = %lor.lhs.false21
  232. %cmp29 = icmp eq i8 %c, 62
  233. br i1 %cmp29, label %lor.end, label %lor.lhs.false31
  234. lor.lhs.false31: ; preds = %lor.lhs.false26
  235. %cmp34 = icmp eq i8 %c, 34
  236. br i1 %cmp34, label %lor.end, label %lor.lhs.false36
  237. lor.lhs.false36: ; preds = %lor.lhs.false31
  238. %cmp39 = icmp eq i8 %c, 92
  239. br i1 %cmp39, label %lor.end, label %lor.rhs
  240. lor.rhs: ; preds = %lor.lhs.false36
  241. %cmp43 = icmp eq i8 %c, 39
  242. br label %lor.end
  243. lor.end: ; preds = %lor.rhs, %lor.lhs.false36, %lor.lhs.false31, %lor.lhs.false26, %lor.lhs.false21, %lor.lhs.false16, %lor.lhs.false11, %lor.lhs.false6, %lor.lhs.false, %entry
  244. %0 = phi i1 [ true, %lor.lhs.false36 ], [ true, %lor.lhs.false31 ], [ true, %lor.lhs.false26 ], [ true, %lor.lhs.false21 ], [ true, %lor.lhs.false16 ], [ true, %lor.lhs.false11 ], [ true, %lor.lhs.false6 ], [ true, %lor.lhs.false ], [ true, %entry ], [ %cmp43, %lor.rhs ]
  245. %conv46 = zext i1 %0 to i32
  246. ret i32 %conv46
  247. ; CHECK-LABEL: @test9(
  248. ; CHECK: %cmp = icmp ult i8 %c, 33
  249. ; CHECK: br i1 %cmp, label %lor.end, label %switch.early.test
  250. ; CHECK: switch.early.test:
  251. ; CHECK: switch i8 %c, label %lor.rhs [
  252. ; CHECK: i8 92, label %lor.end
  253. ; CHECK: i8 62, label %lor.end
  254. ; CHECK: i8 60, label %lor.end
  255. ; CHECK: i8 59, label %lor.end
  256. ; CHECK: i8 58, label %lor.end
  257. ; CHECK: i8 46, label %lor.end
  258. ; CHECK: i8 44, label %lor.end
  259. ; CHECK: i8 34, label %lor.end
  260. ; CHECK: i8 39, label %lor.end
  261. ; CHECK: ]
  262. }
  263. define i32 @test10(i32 %mode, i1 %Cond) {
  264. %A = icmp ne i32 %mode, 0
  265. %B = icmp ne i32 %mode, 51
  266. %C = and i1 %A, %B
  267. %D = and i1 %C, %Cond
  268. br i1 %D, label %T, label %F
  269. T:
  270. ret i32 123
  271. F:
  272. ret i32 324
  273. ; CHECK-LABEL: @test10(
  274. ; CHECK: br i1 %Cond, label %switch.early.test, label %F
  275. ; CHECK:switch.early.test:
  276. ; CHECK: switch i32 %mode, label %T [
  277. ; CHECK: i32 51, label %F
  278. ; CHECK: i32 0, label %F
  279. ; CHECK: ]
  280. }
  281. ; PR8780
  282. define i32 @test11(i32 %bar) nounwind {
  283. entry:
  284. %cmp = icmp eq i32 %bar, 4
  285. %cmp2 = icmp eq i32 %bar, 35
  286. %or.cond = or i1 %cmp, %cmp2
  287. %cmp5 = icmp eq i32 %bar, 53
  288. %or.cond1 = or i1 %or.cond, %cmp5
  289. %cmp8 = icmp eq i32 %bar, 24
  290. %or.cond2 = or i1 %or.cond1, %cmp8
  291. %cmp11 = icmp eq i32 %bar, 23
  292. %or.cond3 = or i1 %or.cond2, %cmp11
  293. %cmp14 = icmp eq i32 %bar, 55
  294. %or.cond4 = or i1 %or.cond3, %cmp14
  295. %cmp17 = icmp eq i32 %bar, 12
  296. %or.cond5 = or i1 %or.cond4, %cmp17
  297. %cmp20 = icmp eq i32 %bar, 35
  298. %or.cond6 = or i1 %or.cond5, %cmp20
  299. br i1 %or.cond6, label %if.then, label %if.end
  300. if.then: ; preds = %entry
  301. br label %return
  302. if.end: ; preds = %entry
  303. br label %return
  304. return: ; preds = %if.end, %if.then
  305. %retval.0 = phi i32 [ 1, %if.then ], [ 0, %if.end ]
  306. ret i32 %retval.0
  307. ; CHECK-LABEL: @test11(
  308. ; CHECK: switch i32 %bar, label %if.end [
  309. ; CHECK: i32 55, label %return
  310. ; CHECK: i32 53, label %return
  311. ; CHECK: i32 35, label %return
  312. ; CHECK: i32 24, label %return
  313. ; CHECK: i32 23, label %return
  314. ; CHECK: i32 12, label %return
  315. ; CHECK: i32 4, label %return
  316. ; CHECK: ]
  317. }
  318. define void @test12() nounwind {
  319. entry:
  320. br label %bb49.us.us
  321. bb49.us.us:
  322. %A = icmp eq i32 undef, undef
  323. br i1 %A, label %bb55.us.us, label %malformed
  324. bb48.us.us:
  325. %B = icmp ugt i32 undef, undef
  326. br i1 %B, label %bb55.us.us, label %bb49.us.us
  327. bb55.us.us:
  328. br label %bb48.us.us
  329. malformed:
  330. ret void
  331. ; CHECK-LABEL: @test12(
  332. }
  333. ; test13 - handle switch formation with ult.
  334. define void @test13(i32 %x) nounwind ssp noredzone {
  335. entry:
  336. %cmp = icmp ult i32 %x, 2
  337. br i1 %cmp, label %if.then, label %lor.lhs.false3
  338. lor.lhs.false3: ; preds = %lor.lhs.false
  339. %cmp5 = icmp eq i32 %x, 3
  340. br i1 %cmp5, label %if.then, label %lor.lhs.false6
  341. lor.lhs.false6: ; preds = %lor.lhs.false3
  342. %cmp8 = icmp eq i32 %x, 4
  343. br i1 %cmp8, label %if.then, label %lor.lhs.false9
  344. lor.lhs.false9: ; preds = %lor.lhs.false6
  345. %cmp11 = icmp eq i32 %x, 6
  346. br i1 %cmp11, label %if.then, label %if.end
  347. if.then: ; preds = %lor.lhs.false9, %lor.lhs.false6, %lor.lhs.false3, %lor.lhs.false, %entry
  348. call void @foo1() noredzone
  349. br label %if.end
  350. if.end: ; preds = %if.then, %lor.lhs.false9
  351. ret void
  352. ; CHECK-LABEL: @test13(
  353. ; CHECK: switch i32 %x, label %if.end [
  354. ; CHECK: i32 6, label %if.then
  355. ; CHECK: i32 4, label %if.then
  356. ; CHECK: i32 3, label %if.then
  357. ; CHECK: i32 1, label %if.then
  358. ; CHECK: i32 0, label %if.then
  359. ; CHECK: ]
  360. }
  361. ; test14 - handle switch formation with ult.
  362. define void @test14(i32 %x) nounwind ssp noredzone {
  363. entry:
  364. %cmp = icmp ugt i32 %x, 2
  365. br i1 %cmp, label %lor.lhs.false3, label %if.then
  366. lor.lhs.false3: ; preds = %lor.lhs.false
  367. %cmp5 = icmp ne i32 %x, 3
  368. br i1 %cmp5, label %lor.lhs.false6, label %if.then
  369. lor.lhs.false6: ; preds = %lor.lhs.false3
  370. %cmp8 = icmp ne i32 %x, 4
  371. br i1 %cmp8, label %lor.lhs.false9, label %if.then
  372. lor.lhs.false9: ; preds = %lor.lhs.false6
  373. %cmp11 = icmp ne i32 %x, 6
  374. br i1 %cmp11, label %if.end, label %if.then
  375. if.then: ; preds = %lor.lhs.false9, %lor.lhs.false6, %lor.lhs.false3, %lor.lhs.false, %entry
  376. call void @foo1() noredzone
  377. br label %if.end
  378. if.end: ; preds = %if.then, %lor.lhs.false9
  379. ret void
  380. ; CHECK-LABEL: @test14(
  381. ; CHECK: switch i32 %x, label %if.end [
  382. ; CHECK: i32 6, label %if.then
  383. ; CHECK: i32 4, label %if.then
  384. ; CHECK: i32 3, label %if.then
  385. ; CHECK: i32 1, label %if.then
  386. ; CHECK: i32 0, label %if.then
  387. ; CHECK: ]
  388. }
  389. ; Don't crash on ginormous ranges.
  390. define void @test15(i128 %x) nounwind {
  391. %cmp = icmp ugt i128 %x, 2
  392. br i1 %cmp, label %if.end, label %lor.false
  393. lor.false:
  394. %cmp2 = icmp ne i128 %x, 100000000000000000000
  395. br i1 %cmp2, label %if.end, label %if.then
  396. if.then:
  397. call void @foo1() noredzone
  398. br label %if.end
  399. if.end:
  400. ret void
  401. ; CHECK-LABEL: @test15(
  402. ; CHECK-NOT: switch
  403. ; CHECK: ret void
  404. }
  405. ; PR8675
  406. ; rdar://5134905
  407. define zeroext i1 @test16(i32 %x) nounwind {
  408. entry:
  409. ; CHECK-LABEL: @test16(
  410. ; CHECK: %x.off = add i32 %x, -1
  411. ; CHECK: %switch = icmp ult i32 %x.off, 3
  412. %cmp.i = icmp eq i32 %x, 1
  413. br i1 %cmp.i, label %lor.end, label %lor.lhs.false
  414. lor.lhs.false:
  415. %cmp.i2 = icmp eq i32 %x, 2
  416. br i1 %cmp.i2, label %lor.end, label %lor.rhs
  417. lor.rhs:
  418. %cmp.i1 = icmp eq i32 %x, 3
  419. br label %lor.end
  420. lor.end:
  421. %0 = phi i1 [ true, %lor.lhs.false ], [ true, %entry ], [ %cmp.i1, %lor.rhs ]
  422. ret i1 %0
  423. }
  424. ; Check that we don't turn an icmp into a switch where it's not useful.
  425. define void @test17(i32 %x, i32 %y) {
  426. %cmp = icmp ult i32 %x, 3
  427. %switch = icmp ult i32 %y, 2
  428. %or.cond775 = or i1 %cmp, %switch
  429. br i1 %or.cond775, label %lor.lhs.false8, label %return
  430. lor.lhs.false8:
  431. tail call void @foo1()
  432. ret void
  433. return:
  434. ret void
  435. ; CHECK-LABEL: @test17(
  436. ; CHECK-NOT: switch.early.test
  437. ; CHECK-NOT: switch i32
  438. ; CHECK: ret void
  439. }
  440. define void @test18(i32 %arg) {
  441. bb:
  442. %tmp = and i32 %arg, -2
  443. %tmp1 = icmp eq i32 %tmp, 8
  444. %tmp2 = icmp eq i32 %arg, 10
  445. %tmp3 = or i1 %tmp1, %tmp2
  446. %tmp4 = icmp eq i32 %arg, 11
  447. %tmp5 = or i1 %tmp3, %tmp4
  448. %tmp6 = icmp eq i32 %arg, 12
  449. %tmp7 = or i1 %tmp5, %tmp6
  450. br i1 %tmp7, label %bb19, label %bb8
  451. bb8: ; preds = %bb
  452. %tmp9 = add i32 %arg, -13
  453. %tmp10 = icmp ult i32 %tmp9, 2
  454. %tmp11 = icmp eq i32 %arg, 16
  455. %tmp12 = or i1 %tmp10, %tmp11
  456. %tmp13 = icmp eq i32 %arg, 17
  457. %tmp14 = or i1 %tmp12, %tmp13
  458. %tmp15 = icmp eq i32 %arg, 18
  459. %tmp16 = or i1 %tmp14, %tmp15
  460. %tmp17 = icmp eq i32 %arg, 15
  461. %tmp18 = or i1 %tmp16, %tmp17
  462. br i1 %tmp18, label %bb19, label %bb20
  463. bb19: ; preds = %bb8, %bb
  464. tail call void @foo1()
  465. br label %bb20
  466. bb20: ; preds = %bb19, %bb8
  467. ret void
  468. ; CHECK-LABEL: @test18(
  469. ; CHECK: %arg.off = add i32 %arg, -8
  470. ; CHECK: icmp ult i32 %arg.off, 11
  471. }