right_shift.carbon 7.2 KB

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  1. // Part of the Carbon Language project, under the Apache License v2.0 with LLVM
  2. // Exceptions. See /LICENSE for license information.
  3. // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
  4. //
  5. // INCLUDE-FILE: toolchain/testing/testdata/min_prelude/uint.carbon
  6. //
  7. // AUTOUPDATE
  8. // TIP: To test this file alone, run:
  9. // TIP: bazel test //toolchain/testing:file_test --test_arg=--file_tests=toolchain/check/testdata/builtins/int/right_shift.carbon
  10. // TIP: To dump output, run:
  11. // TIP: bazel run //toolchain/testing:file_test -- --dump_output --file_tests=toolchain/check/testdata/builtins/int/right_shift.carbon
  12. // --- i32.carbon
  13. library "[[@TEST_NAME]]";
  14. class Expect(N:! i32) {}
  15. fn Test(N:! i32) -> Expect(N) { return {}; }
  16. fn RightShift(a: i32, b: i32) -> i32 = "int.right_shift";
  17. fn F() {
  18. Test(RightShift(0, 31)) as Expect(0);
  19. Test(RightShift(1, 31)) as Expect(0);
  20. Test(RightShift(1, 0)) as Expect(1);
  21. Test(RightShift(1, 2)) as Expect(0);
  22. Test(RightShift(22, 2)) as Expect(5);
  23. Test(RightShift(-1, 1)) as Expect(-1);
  24. Test(RightShift(-2, 1)) as Expect(-1);
  25. Test(RightShift(-10, 2)) as Expect(-3);
  26. }
  27. fn RuntimeCallIsValid(a: i32, b: i32) -> i32 {
  28. //@dump-sem-ir-begin
  29. return RightShift(a, b);
  30. //@dump-sem-ir-end
  31. }
  32. // --- u32.carbon
  33. library "[[@TEST_NAME]]";
  34. class Expect(N:! u32) {}
  35. fn Test(N:! u32) -> Expect(N) { return {}; }
  36. fn RightShift(a: u32, b: i32) -> u32 = "int.right_shift";
  37. fn F() {
  38. Test(RightShift(0, 31)) as Expect(0);
  39. Test(RightShift(1, 31)) as Expect(0);
  40. Test(RightShift(1, 0)) as Expect(1);
  41. Test(RightShift(1, 2)) as Expect(0);
  42. Test(RightShift(22, 2)) as Expect(5);
  43. Test(RightShift(0xFFFF_FFFF, 1)) as Expect(0x7FFF_FFFF);
  44. Test(RightShift(0xABCD_EF01, 8)) as Expect(0xAB_CDEF);
  45. }
  46. fn RuntimeCall(a: u32, b: i32) -> u32 {
  47. //@dump-sem-ir-begin
  48. return RightShift(a, b);
  49. //@dump-sem-ir-end
  50. }
  51. // --- literal.carbon
  52. library "[[@TEST_NAME]]";
  53. fn RightShift(a: Core.IntLiteral(), b: Core.IntLiteral()) -> Core.IntLiteral() = "int.right_shift";
  54. class Expect(N:! Core.IntLiteral()) {}
  55. fn Test(N:! Core.IntLiteral()) -> Expect(N) { return {}; }
  56. fn F() {
  57. Test(RightShift(0, 31)) as Expect(0);
  58. Test(RightShift(1, 31)) as Expect(0);
  59. Test(RightShift(1, 0)) as Expect(1);
  60. Test(RightShift(1, 2)) as Expect(0);
  61. Test(RightShift(22, 2)) as Expect(5);
  62. Test(RightShift(-1, 1)) as Expect(-1);
  63. Test(RightShift(-2, 1)) as Expect(-1);
  64. Test(RightShift(-10, 2)) as Expect(-3);
  65. Test(RightShift(0xFFFF_FFFF, 1)) as Expect(0x7FFF_FFFF);
  66. Test(RightShift(0xABCD_EF01, 8)) as Expect(0xAB_CDEF);
  67. Test(RightShift(0x1234_5678, 1_000_000_000)) as Expect(0);
  68. Test(RightShift(-0x1234_5678, 1_000_000_000)) as Expect(-1);
  69. Test(RightShift(0xFFFF_FFFF_FFFF_FFFF, 1_000_000_000)) as Expect(0);
  70. Test(RightShift(0x7FFF_FFFF_FFFF_FFFF, 1_000_000_000)) as Expect(0);
  71. Test(RightShift(-0x7FFF_FFFF_FFFF_FFFF, 1_000_000_000)) as Expect(-1);
  72. Test(RightShift(-0x8000_0000_0000_0000, 1_000_000_000)) as Expect(-1);
  73. }
  74. // --- fail_bad_shift.carbon
  75. library "[[@TEST_NAME]]";
  76. fn RightShift(a: i32, b: i32) -> i32 = "int.right_shift";
  77. fn RightShiftLit(a: Core.IntLiteral(), b: i32) -> Core.IntLiteral() = "int.right_shift";
  78. // Shift greater than size is disallowed for sized types.
  79. let size_1: i32 = RightShift(1, 31);
  80. // CHECK:STDERR: fail_bad_shift.carbon:[[@LINE+4]]:19: error: shift distance >= type width of 32 in `1 >> 32` [CompileTimeShiftOutOfRange]
  81. // CHECK:STDERR: let size_2: i32 = RightShift(1, 32);
  82. // CHECK:STDERR: ^~~~~~~~~~~~~~~~~
  83. // CHECK:STDERR:
  84. let size_2: i32 = RightShift(1, 32);
  85. // CHECK:STDERR: fail_bad_shift.carbon:[[@LINE+4]]:19: error: shift distance >= type width of 32 in `1 >> 33` [CompileTimeShiftOutOfRange]
  86. // CHECK:STDERR: let size_3: i32 = RightShift(1, 33);
  87. // CHECK:STDERR: ^~~~~~~~~~~~~~~~~
  88. // CHECK:STDERR:
  89. let size_3: i32 = RightShift(1, 33);
  90. // Negative shifts aren't allowed either, even for literals, even if the lhs is zero.
  91. // CHECK:STDERR: fail_bad_shift.carbon:[[@LINE+4]]:21: error: shift distance >= type width of 32 in `1 >> -1` [CompileTimeShiftOutOfRange]
  92. // CHECK:STDERR: let negative: i32 = RightShift(1, -1);
  93. // CHECK:STDERR: ^~~~~~~~~~~~~~~~~
  94. // CHECK:STDERR:
  95. let negative: i32 = RightShift(1, -1);
  96. // CHECK:STDERR: fail_bad_shift.carbon:[[@LINE+4]]:26: error: shift distance >= type width of 32 in `0 >> -1` [CompileTimeShiftOutOfRange]
  97. // CHECK:STDERR: let negative_zero: i32 = RightShift(0, -1);
  98. // CHECK:STDERR: ^~~~~~~~~~~~~~~~~
  99. // CHECK:STDERR:
  100. let negative_zero: i32 = RightShift(0, -1);
  101. // CHECK:STDERR: fail_bad_shift.carbon:[[@LINE+4]]:39: error: shift distance negative in `1 >> -1` [CompileTimeShiftNegative]
  102. // CHECK:STDERR: let negative_lit: Core.IntLiteral() = RightShiftLit(1, -1);
  103. // CHECK:STDERR: ^~~~~~~~~~~~~~~~~~~~
  104. // CHECK:STDERR:
  105. let negative_lit: Core.IntLiteral() = RightShiftLit(1, -1);
  106. // CHECK:STDERR: fail_bad_shift.carbon:[[@LINE+4]]:44: error: shift distance negative in `0 >> -1` [CompileTimeShiftNegative]
  107. // CHECK:STDERR: let negative_lit_zero: Core.IntLiteral() = RightShiftLit(0, -1);
  108. // CHECK:STDERR: ^~~~~~~~~~~~~~~~~~~~
  109. // CHECK:STDERR:
  110. let negative_lit_zero: Core.IntLiteral() = RightShiftLit(0, -1);
  111. // CHECK:STDOUT: --- i32.carbon
  112. // CHECK:STDOUT:
  113. // CHECK:STDOUT: constants {
  114. // CHECK:STDOUT: %int_32: Core.IntLiteral = int_value 32 [concrete]
  115. // CHECK:STDOUT: %i32: type = class_type @Int, @Int(%int_32) [concrete]
  116. // CHECK:STDOUT: %RightShift.type: type = fn_type @RightShift [concrete]
  117. // CHECK:STDOUT: %RightShift: %RightShift.type = struct_value () [concrete]
  118. // CHECK:STDOUT: }
  119. // CHECK:STDOUT:
  120. // CHECK:STDOUT: imports {
  121. // CHECK:STDOUT: }
  122. // CHECK:STDOUT:
  123. // CHECK:STDOUT: fn @RuntimeCallIsValid(%a.param: %i32, %b.param: %i32) -> %i32 {
  124. // CHECK:STDOUT: !entry:
  125. // CHECK:STDOUT: %RightShift.ref: %RightShift.type = name_ref RightShift, file.%RightShift.decl [concrete = constants.%RightShift]
  126. // CHECK:STDOUT: %a.ref: %i32 = name_ref a, %a
  127. // CHECK:STDOUT: %b.ref: %i32 = name_ref b, %b
  128. // CHECK:STDOUT: %RightShift.call: init %i32 = call %RightShift.ref(%a.ref, %b.ref)
  129. // CHECK:STDOUT: return %RightShift.call to %return.param
  130. // CHECK:STDOUT: }
  131. // CHECK:STDOUT:
  132. // CHECK:STDOUT: --- u32.carbon
  133. // CHECK:STDOUT:
  134. // CHECK:STDOUT: constants {
  135. // CHECK:STDOUT: %int_32: Core.IntLiteral = int_value 32 [concrete]
  136. // CHECK:STDOUT: %u32: type = class_type @UInt, @UInt(%int_32) [concrete]
  137. // CHECK:STDOUT: %i32: type = class_type @Int, @Int(%int_32) [concrete]
  138. // CHECK:STDOUT: %RightShift.type: type = fn_type @RightShift [concrete]
  139. // CHECK:STDOUT: %RightShift: %RightShift.type = struct_value () [concrete]
  140. // CHECK:STDOUT: }
  141. // CHECK:STDOUT:
  142. // CHECK:STDOUT: imports {
  143. // CHECK:STDOUT: }
  144. // CHECK:STDOUT:
  145. // CHECK:STDOUT: fn @RuntimeCall(%a.param: %u32, %b.param: %i32) -> %u32 {
  146. // CHECK:STDOUT: !entry:
  147. // CHECK:STDOUT: %RightShift.ref: %RightShift.type = name_ref RightShift, file.%RightShift.decl [concrete = constants.%RightShift]
  148. // CHECK:STDOUT: %a.ref: %u32 = name_ref a, %a
  149. // CHECK:STDOUT: %b.ref: %i32 = name_ref b, %b
  150. // CHECK:STDOUT: %RightShift.call: init %u32 = call %RightShift.ref(%a.ref, %b.ref)
  151. // CHECK:STDOUT: return %RightShift.call to %return.param
  152. // CHECK:STDOUT: }
  153. // CHECK:STDOUT: