memcpy-from-global.ll 10 KB

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  1. ; RUN: opt < %s -instcombine -S | FileCheck %s
  2. target datalayout = "E-p:64:64:64-i1:8:8-i8:8:8-i16:16:16-i32:32:32-i64:32:64-f32:32:32-f64:64:64-v64:64:64-v128:128:128-a0:0:64"
  3. @C.0.1248 = internal constant [128 x float] [ float -1.000000e+00, float -1.000000e+00, float -1.000000e+00, float 0.000000e+00, float -1.000000e+00, float -1.000000e+00, float 0.000000e+00, float -1.000000e+00, float -1.000000e+00, float -1.000000e+00, float 0.000000e+00, float 1.000000e+00, float -1.000000e+00, float -1.000000e+00, float 1.000000e+00, float 0.000000e+00, float -1.000000e+00, float 0.000000e+00, float -1.000000e+00, float -1.000000e+00, float -1.000000e+00, float 0.000000e+00, float -1.000000e+00, float 1.000000e+00, float -1.000000e+00, float 0.000000e+00, float 1.000000e+00, float -1.000000e+00, float -1.000000e+00, float 0.000000e+00, float 1.000000e+00, float 1.000000e+00, float -1.000000e+00, float 1.000000e+00, float -1.000000e+00, float 0.000000e+00, float -1.000000e+00, float 1.000000e+00, float 0.000000e+00, float -1.000000e+00, float -1.000000e+00, float 1.000000e+00, float 0.000000e+00, float 1.000000e+00, float -1.000000e+00, float 1.000000e+00, float 1.000000e+00, float 0.000000e+00, float 0.000000e+00, float -1.000000e+00, float -1.000000e+00, float -1.000000e+00, float 0.000000e+00, float -1.000000e+00, float -1.000000e+00, float 1.000000e+00, float 0.000000e+00, float -1.000000e+00, float 1.000000e+00, float -1.000000e+00, float 0.000000e+00, float -1.000000e+00, float 1.000000e+00, float 1.000000e+00, float 1.000000e+00, float -1.000000e+00, float -1.000000e+00, float 0.000000e+00, float 1.000000e+00, float -1.000000e+00, float 0.000000e+00, float -1.000000e+00, float 1.000000e+00, float -1.000000e+00, float 0.000000e+00, float 1.000000e+00, float 1.000000e+00, float -1.000000e+00, float 1.000000e+00, float 0.000000e+00, float 1.000000e+00, float 0.000000e+00, float -1.000000e+00, float -1.000000e+00, float 1.000000e+00, float 0.000000e+00, float -1.000000e+00, float 1.000000e+00, float 1.000000e+00, float 0.000000e+00, float 1.000000e+00, float -1.000000e+00, float 1.000000e+00, float 0.000000e+00, float 1.000000e+00, float 1.000000e+00, float 1.000000e+00, float 1.000000e+00, float -1.000000e+00, float 0.000000e+00, float 1.000000e+00, float 1.000000e+00, float 0.000000e+00, float -1.000000e+00, float 1.000000e+00, float 1.000000e+00, float 0.000000e+00, float 1.000000e+00, float 1.000000e+00, float 1.000000e+00, float 1.000000e+00, float 0.000000e+00, float 0.000000e+00, float 1.000000e+00, float -1.000000e+00, float -1.000000e+00, float 0.000000e+00, float 1.000000e+00, float -1.000000e+00, float 1.000000e+00, float 0.000000e+00, float 1.000000e+00, float 1.000000e+00, float -1.000000e+00, float 0.000000e+00, float 1.000000e+00, float 1.000000e+00, float 1.000000e+00 ], align 32 ; <[128 x float]*> [#uses=1]
  4. define float @test1(i32 %hash, float %x, float %y, float %z, float %w) {
  5. entry:
  6. %lookupTable = alloca [128 x float], align 16 ; <[128 x float]*> [#uses=5]
  7. %lookupTable1 = bitcast [128 x float]* %lookupTable to i8* ; <i8*> [#uses=1]
  8. call void @llvm.memcpy.p0i8.p0i8.i64(i8* %lookupTable1, i8* bitcast ([128 x float]* @C.0.1248 to i8*), i64 512, i32 16, i1 false)
  9. ; CHECK-LABEL: @test1(
  10. ; CHECK-NOT: alloca
  11. ; CHECK-NOT: call{{.*}}@llvm.memcpy
  12. %tmp3 = shl i32 %hash, 2 ; <i32> [#uses=1]
  13. %tmp5 = and i32 %tmp3, 124 ; <i32> [#uses=4]
  14. %tmp753 = getelementptr [128 x float], [128 x float]* %lookupTable, i32 0, i32 %tmp5 ; <float*> [#uses=1]
  15. %tmp9 = load float, float* %tmp753 ; <float> [#uses=1]
  16. %tmp11 = fmul float %tmp9, %x ; <float> [#uses=1]
  17. %tmp13 = fadd float %tmp11, 0.000000e+00 ; <float> [#uses=1]
  18. %tmp17.sum52 = or i32 %tmp5, 1 ; <i32> [#uses=1]
  19. %tmp1851 = getelementptr [128 x float], [128 x float]* %lookupTable, i32 0, i32 %tmp17.sum52 ; <float*> [#uses=1]
  20. %tmp19 = load float, float* %tmp1851 ; <float> [#uses=1]
  21. %tmp21 = fmul float %tmp19, %y ; <float> [#uses=1]
  22. %tmp23 = fadd float %tmp21, %tmp13 ; <float> [#uses=1]
  23. %tmp27.sum50 = or i32 %tmp5, 2 ; <i32> [#uses=1]
  24. %tmp2849 = getelementptr [128 x float], [128 x float]* %lookupTable, i32 0, i32 %tmp27.sum50 ; <float*> [#uses=1]
  25. %tmp29 = load float, float* %tmp2849 ; <float> [#uses=1]
  26. %tmp31 = fmul float %tmp29, %z ; <float> [#uses=1]
  27. %tmp33 = fadd float %tmp31, %tmp23 ; <float> [#uses=1]
  28. %tmp37.sum48 = or i32 %tmp5, 3 ; <i32> [#uses=1]
  29. %tmp3847 = getelementptr [128 x float], [128 x float]* %lookupTable, i32 0, i32 %tmp37.sum48 ; <float*> [#uses=1]
  30. %tmp39 = load float, float* %tmp3847 ; <float> [#uses=1]
  31. %tmp41 = fmul float %tmp39, %w ; <float> [#uses=1]
  32. %tmp43 = fadd float %tmp41, %tmp33 ; <float> [#uses=1]
  33. ret float %tmp43
  34. }
  35. declare void @llvm.memcpy.p0i8.p0i8.i64(i8* nocapture, i8* nocapture, i64, i32, i1) nounwind
  36. declare void @llvm.memcpy.p1i8.p0i8.i64(i8 addrspace(1)* nocapture, i8* nocapture, i64, i32, i1) nounwind
  37. declare void @llvm.memcpy.p0i8.p1i8.i64(i8* nocapture, i8 addrspace(1)* nocapture, i64, i32, i1) nounwind
  38. declare void @llvm.memcpy.p1i8.p1i8.i64(i8 addrspace(1)* nocapture, i8 addrspace(1)* nocapture, i64, i32, i1) nounwind
  39. %T = type { i8, [123 x i8] }
  40. %U = type { i32, i32, i32, i32, i32 }
  41. @G = constant %T {i8 1, [123 x i8] zeroinitializer }
  42. @H = constant [2 x %U] zeroinitializer, align 16
  43. define void @test2() {
  44. %A = alloca %T
  45. %B = alloca %T
  46. %a = bitcast %T* %A to i8*
  47. %b = bitcast %T* %B to i8*
  48. ; CHECK-LABEL: @test2(
  49. ; %A alloca is deleted
  50. ; CHECK-NEXT: alloca [124 x i8]
  51. ; CHECK-NEXT: getelementptr inbounds [124 x i8], [124 x i8]*
  52. ; use @G instead of %A
  53. ; CHECK-NEXT: call void @llvm.memcpy.p0i8.p0i8.i64(i8* %{{.*}}, i8* getelementptr inbounds (%T, %T* @G, i64 0, i32 0)
  54. call void @llvm.memcpy.p0i8.p0i8.i64(i8* %a, i8* bitcast (%T* @G to i8*), i64 124, i32 4, i1 false)
  55. call void @llvm.memcpy.p0i8.p0i8.i64(i8* %b, i8* %a, i64 124, i32 4, i1 false)
  56. call void @bar(i8* %b)
  57. ret void
  58. }
  59. define void @test2_addrspacecast() {
  60. %A = alloca %T
  61. %B = alloca %T
  62. %a = addrspacecast %T* %A to i8 addrspace(1)*
  63. %b = addrspacecast %T* %B to i8 addrspace(1)*
  64. ; CHECK-LABEL: @test2_addrspacecast(
  65. ; %A alloca is deleted
  66. ; This doesn't exactly match what test2 does, because folding the type
  67. ; cast into the alloca doesn't work for the addrspacecast yet.
  68. ; CHECK-NEXT: alloca [124 x i8]
  69. ; CHECK-NEXT: getelementptr
  70. ; CHECK-NEXT: addrspacecast
  71. ; use @G instead of %A
  72. ; CHECK-NEXT: call void @llvm.memcpy.p1i8.p1i8.i64(i8 addrspace(1)* %{{.*}},
  73. call void @llvm.memcpy.p1i8.p0i8.i64(i8 addrspace(1)* %a, i8* bitcast (%T* @G to i8*), i64 124, i32 4, i1 false)
  74. call void @llvm.memcpy.p1i8.p1i8.i64(i8 addrspace(1)* %b, i8 addrspace(1)* %a, i64 124, i32 4, i1 false)
  75. call void @bar_as1(i8 addrspace(1)* %b)
  76. ret void
  77. }
  78. declare void @bar(i8*)
  79. declare void @bar_as1(i8 addrspace(1)*)
  80. ;; Should be able to eliminate the alloca.
  81. define void @test3() {
  82. %A = alloca %T
  83. %a = bitcast %T* %A to i8*
  84. call void @llvm.memcpy.p0i8.p0i8.i64(i8* %a, i8* bitcast (%T* @G to i8*), i64 124, i32 4, i1 false)
  85. call void @bar(i8* %a) readonly
  86. ; CHECK-LABEL: @test3(
  87. ; CHECK-NEXT: call void @bar(i8* getelementptr inbounds (%T, %T* @G, i64 0, i32 0))
  88. ret void
  89. }
  90. define void @test3_addrspacecast() {
  91. %A = alloca %T
  92. %a = bitcast %T* %A to i8*
  93. call void @llvm.memcpy.p0i8.p1i8.i64(i8* %a, i8 addrspace(1)* addrspacecast (%T* @G to i8 addrspace(1)*), i64 124, i32 4, i1 false)
  94. call void @bar(i8* %a) readonly
  95. ; CHECK-LABEL: @test3_addrspacecast(
  96. ; CHECK-NEXT: call void @bar(i8* getelementptr inbounds (%T, %T* @G, i64 0, i32 0))
  97. ret void
  98. }
  99. define void @test4() {
  100. %A = alloca %T
  101. %a = bitcast %T* %A to i8*
  102. call void @llvm.memcpy.p0i8.p0i8.i64(i8* %a, i8* bitcast (%T* @G to i8*), i64 124, i32 4, i1 false)
  103. call void @baz(i8* byval %a)
  104. ; CHECK-LABEL: @test4(
  105. ; CHECK-NEXT: call void @baz(i8* byval getelementptr inbounds (%T, %T* @G, i64 0, i32 0))
  106. ret void
  107. }
  108. declare void @llvm.lifetime.start(i64, i8*)
  109. define void @test5() {
  110. %A = alloca %T
  111. %a = bitcast %T* %A to i8*
  112. call void @llvm.lifetime.start(i64 -1, i8* %a)
  113. call void @llvm.memcpy.p0i8.p0i8.i64(i8* %a, i8* bitcast (%T* @G to i8*), i64 124, i32 4, i1 false)
  114. call void @baz(i8* byval %a)
  115. ; CHECK-LABEL: @test5(
  116. ; CHECK-NEXT: call void @baz(i8* byval getelementptr inbounds (%T, %T* @G, i64 0, i32 0))
  117. ret void
  118. }
  119. declare void @baz(i8* byval)
  120. define void @test6() {
  121. %A = alloca %U, align 16
  122. %a = bitcast %U* %A to i8*
  123. call void @llvm.memcpy.p0i8.p0i8.i64(i8* %a, i8* bitcast ([2 x %U]* @H to i8*), i64 20, i32 16, i1 false)
  124. call void @bar(i8* %a) readonly
  125. ; CHECK-LABEL: @test6(
  126. ; CHECK-NEXT: call void @bar(i8* bitcast ([2 x %U]* @H to i8*))
  127. ret void
  128. }
  129. define void @test7() {
  130. %A = alloca %U, align 16
  131. %a = bitcast %U* %A to i8*
  132. call void @llvm.memcpy.p0i8.p0i8.i64(i8* %a, i8* bitcast (%U* getelementptr ([2 x %U], [2 x %U]* @H, i64 0, i32 0) to i8*), i64 20, i32 4, i1 false)
  133. call void @bar(i8* %a) readonly
  134. ; CHECK-LABEL: @test7(
  135. ; CHECK-NEXT: call void @bar(i8* bitcast ([2 x %U]* @H to i8*))
  136. ret void
  137. }
  138. define void @test8() {
  139. %A = alloca %U, align 16
  140. %a = bitcast %U* %A to i8*
  141. call void @llvm.memcpy.p0i8.p0i8.i64(i8* %a, i8* bitcast (%U* getelementptr ([2 x %U], [2 x %U]* @H, i64 0, i32 1) to i8*), i64 20, i32 4, i1 false)
  142. call void @bar(i8* %a) readonly
  143. ; CHECK-LABEL: @test8(
  144. ; CHECK: llvm.memcpy
  145. ; CHECK: bar
  146. ret void
  147. }
  148. define void @test8_addrspacecast() {
  149. %A = alloca %U, align 16
  150. %a = bitcast %U* %A to i8*
  151. call void @llvm.memcpy.p0i8.p1i8.i64(i8* %a, i8 addrspace(1)* addrspacecast (%U* getelementptr ([2 x %U], [2 x %U]* @H, i64 0, i32 1) to i8 addrspace(1)*), i64 20, i32 4, i1 false)
  152. call void @bar(i8* %a) readonly
  153. ; CHECK-LABEL: @test8_addrspacecast(
  154. ; CHECK: llvm.memcpy
  155. ; CHECK: bar
  156. ret void
  157. }
  158. define void @test9() {
  159. %A = alloca %U, align 4
  160. %a = bitcast %U* %A to i8*
  161. call void @llvm.memcpy.p0i8.p0i8.i64(i8* %a, i8* bitcast (%U* getelementptr ([2 x %U], [2 x %U]* @H, i64 0, i32 1) to i8*), i64 20, i32 4, i1 false)
  162. call void @bar(i8* %a) readonly
  163. ; CHECK-LABEL: @test9(
  164. ; CHECK-NEXT: call void @bar(i8* bitcast (%U* getelementptr inbounds ([2 x %U], [2 x %U]* @H, i64 0, i64 1) to i8*))
  165. ret void
  166. }
  167. define void @test9_addrspacecast() {
  168. %A = alloca %U, align 4
  169. %a = bitcast %U* %A to i8*
  170. call void @llvm.memcpy.p0i8.p1i8.i64(i8* %a, i8 addrspace(1)* addrspacecast (%U* getelementptr ([2 x %U], [2 x %U]* @H, i64 0, i32 1) to i8 addrspace(1)*), i64 20, i32 4, i1 false)
  171. call void @bar(i8* %a) readonly
  172. ; CHECK-LABEL: @test9_addrspacecast(
  173. ; CHECK-NEXT: call void @bar(i8* bitcast (%U* getelementptr inbounds ([2 x %U], [2 x %U]* @H, i64 0, i64 1) to i8*))
  174. ret void
  175. }