multdeadretval.ll 2.6 KB

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  1. ; This test sees if return values (and arguments) are properly removed when they
  2. ; are unused. All unused values are typed i16, so we can easily check. We also
  3. ; run instcombine to fold insert/extractvalue chains and we run dce to clean up
  4. ; any remaining dead stuff.
  5. ; RUN: opt < %s -deadargelim -instcombine -dce -S | not grep i16
  6. define internal {i16, i32} @test(i16 %DEADARG) {
  7. %A = insertvalue {i16,i32} undef, i16 1, 0
  8. %B = insertvalue {i16,i32} %A, i32 1001, 1
  9. ret {i16,i32} %B
  10. }
  11. define internal {i32, i16} @test2() {
  12. %DEAD = call i16 @test4()
  13. %A = insertvalue {i32,i16} undef, i32 1, 0
  14. %B = insertvalue {i32,i16} %A, i16 %DEAD, 1
  15. ret {i32,i16} %B
  16. }
  17. ; Dead argument, used to check if the second result of test2 is dead even when
  18. ; it's used as a dead argument
  19. define internal i32 @test3(i16 %A) {
  20. %ret = call {i16, i32} @test( i16 %A ) ; <i32> [#uses=0]
  21. %DEAD = extractvalue {i16, i32} %ret, 0
  22. %LIVE = extractvalue {i16, i32} %ret, 1
  23. ret i32 %LIVE
  24. }
  25. define internal i16 @test4() {
  26. ret i16 0
  27. }
  28. ; Multiple return values, multiple live return values
  29. define internal {i32, i32, i16} @test5() {
  30. %A = insertvalue {i32,i32,i16} undef, i32 1, 0
  31. %B = insertvalue {i32,i32,i16} %A, i32 2, 1
  32. %C = insertvalue {i32,i32,i16} %B, i16 3, 2
  33. ret {i32, i32, i16} %C
  34. }
  35. ; Nested return values
  36. define internal {{i32}, {i16, i16}} @test6() {
  37. %A = insertvalue {{i32}, {i16, i16}} undef, i32 1, 0, 0
  38. %B = insertvalue {{i32}, {i16, i16}} %A, i16 2, 1, 0
  39. %C = insertvalue {{i32}, {i16, i16}} %B, i16 3, 1, 1
  40. ret {{i32}, {i16, i16}} %C
  41. }
  42. define i32 @main() {
  43. %ret = call {i32, i16} @test2() ; <i32> [#uses=1]
  44. %LIVE = extractvalue {i32, i16} %ret, 0
  45. %DEAD = extractvalue {i32, i16} %ret, 1
  46. %Y = add i32 %LIVE, -123 ; <i32> [#uses=1]
  47. %LIVE2 = call i32 @test3(i16 %DEAD) ; <i32> [#uses=1]
  48. %Z = add i32 %LIVE2, %Y ; <i32> [#uses=1]
  49. %ret1 = call { i32, i32, i16 } @test5 ()
  50. %LIVE3 = extractvalue { i32, i32, i16} %ret1, 0
  51. %LIVE4 = extractvalue { i32, i32, i16} %ret1, 1
  52. %DEAD2 = extractvalue { i32, i32, i16} %ret1, 2
  53. %V = add i32 %LIVE3, %LIVE4
  54. %W = add i32 %Z, %V
  55. %ret2 = call { { i32 }, { i16, i16 } } @test6 ()
  56. %LIVE5 = extractvalue { { i32 }, { i16, i16 } } %ret2, 0, 0
  57. %DEAD3 = extractvalue { { i32 }, { i16, i16 } } %ret2, 1, 0
  58. %DEAD4 = extractvalue { { i32 }, { i16, i16 } } %ret2, 1, 1
  59. %Q = add i32 %W, %LIVE5
  60. ret i32 %Q
  61. }