ASanStackFrameLayoutTest.cpp 5.8 KB

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  1. //===- ASanStackFrameLayoutTest.cpp - Tests for ComputeASanStackFrameLayout===//
  2. //
  3. // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
  4. // See https://llvm.org/LICENSE.txt for license information.
  5. // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
  6. //
  7. //===----------------------------------------------------------------------===//
  8. #include "llvm/Transforms/Utils/ASanStackFrameLayout.h"
  9. #include "llvm/ADT/ArrayRef.h"
  10. #include "gtest/gtest.h"
  11. #include <sstream>
  12. using namespace llvm;
  13. static std::string
  14. ShadowBytesToString(ArrayRef<uint8_t> ShadowBytes) {
  15. std::ostringstream os;
  16. for (size_t i = 0, n = ShadowBytes.size(); i < n; i++) {
  17. switch (ShadowBytes[i]) {
  18. case kAsanStackLeftRedzoneMagic: os << "L"; break;
  19. case kAsanStackRightRedzoneMagic: os << "R"; break;
  20. case kAsanStackMidRedzoneMagic: os << "M"; break;
  21. case kAsanStackUseAfterScopeMagic:
  22. os << "S";
  23. break;
  24. default: os << (unsigned)ShadowBytes[i];
  25. }
  26. }
  27. return os.str();
  28. }
  29. // Use macro to preserve line information in EXPECT_EQ output.
  30. #define TEST_LAYOUT(V, Granularity, MinHeaderSize, ExpectedDescr, \
  31. ExpectedShadow, ExpectedShadowAfterScope) \
  32. { \
  33. SmallVector<ASanStackVariableDescription, 10> Vars = V; \
  34. ASanStackFrameLayout L = \
  35. ComputeASanStackFrameLayout(Vars, Granularity, MinHeaderSize); \
  36. EXPECT_STREQ(ExpectedDescr, \
  37. ComputeASanStackFrameDescription(Vars).c_str()); \
  38. EXPECT_EQ(ExpectedShadow, ShadowBytesToString(GetShadowBytes(Vars, L))); \
  39. EXPECT_EQ(ExpectedShadowAfterScope, \
  40. ShadowBytesToString(GetShadowBytesAfterScope(Vars, L))); \
  41. }
  42. TEST(ASanStackFrameLayout, Test) {
  43. #define VAR(name, size, lifetime, alignment, line) \
  44. ASanStackVariableDescription name##size##_##alignment = { \
  45. #name #size "_" #alignment, \
  46. size, \
  47. lifetime, \
  48. alignment, \
  49. 0, \
  50. 0, \
  51. line, \
  52. }
  53. VAR(a, 1, 0, 1, 0);
  54. VAR(p, 1, 0, 32, 15);
  55. VAR(p, 1, 0, 256, 2700);
  56. VAR(a, 2, 0, 1, 0);
  57. VAR(a, 3, 0, 1, 0);
  58. VAR(a, 4, 0, 1, 0);
  59. VAR(a, 7, 0, 1, 0);
  60. VAR(a, 8, 8, 1, 0);
  61. VAR(a, 9, 0, 1, 0);
  62. VAR(a, 16, 16, 1, 0);
  63. VAR(a, 41, 9, 1, 7);
  64. VAR(a, 105, 103, 1, 0);
  65. VAR(a, 200, 97, 1, 0);
  66. TEST_LAYOUT({a1_1}, 8, 16, "1 16 1 4 a1_1", "LL1R", "LL1R");
  67. TEST_LAYOUT({a1_1}, 16, 16, "1 16 1 4 a1_1", "L1R", "L1R");
  68. TEST_LAYOUT({a1_1}, 32, 32, "1 32 1 4 a1_1", "L1R", "L1R");
  69. TEST_LAYOUT({a1_1}, 64, 64, "1 64 1 4 a1_1", "L1R", "L1R");
  70. TEST_LAYOUT({p1_32}, 8, 32, "1 32 1 8 p1_32:15", "LLLL1RRR", "LLLL1RRR");
  71. TEST_LAYOUT({p1_32}, 8, 64, "1 64 1 8 p1_32:15", "LLLLLLLL1RRRRRRR",
  72. "LLLLLLLL1RRRRRRR");
  73. TEST_LAYOUT({a1_1}, 8, 32, "1 32 1 4 a1_1", "LLLL1RRR", "LLLL1RRR");
  74. TEST_LAYOUT({a2_1}, 8, 32, "1 32 2 4 a2_1", "LLLL2RRR", "LLLL2RRR");
  75. TEST_LAYOUT({a3_1}, 8, 32, "1 32 3 4 a3_1", "LLLL3RRR", "LLLL3RRR");
  76. TEST_LAYOUT({a4_1}, 8, 32, "1 32 4 4 a4_1", "LLLL4RRR", "LLLL4RRR");
  77. TEST_LAYOUT({a7_1}, 8, 32, "1 32 7 4 a7_1", "LLLL7RRR", "LLLL7RRR");
  78. TEST_LAYOUT({a8_1}, 8, 32, "1 32 8 4 a8_1", "LLLL0RRR", "LLLLSRRR");
  79. TEST_LAYOUT({a9_1}, 8, 32, "1 32 9 4 a9_1", "LLLL01RR", "LLLL01RR");
  80. TEST_LAYOUT({a16_1}, 8, 32, "1 32 16 5 a16_1", "LLLL00RR", "LLLLSSRR");
  81. TEST_LAYOUT({p1_256}, 8, 32, "1 256 1 11 p1_256:2700",
  82. "LLLLLLLLLLLLLLLLLLLLLLLLLLLLLLLL1RRR",
  83. "LLLLLLLLLLLLLLLLLLLLLLLLLLLLLLLL1RRR");
  84. TEST_LAYOUT({a41_1}, 8, 32, "1 32 41 7 a41_1:7", "LLLL000001RRRRRR",
  85. "LLLLSS0001RRRRRR");
  86. TEST_LAYOUT({a105_1}, 8, 32, "1 32 105 6 a105_1", "LLLL00000000000001RRRRRR",
  87. "LLLLSSSSSSSSSSSSS1RRRRRR");
  88. {
  89. SmallVector<ASanStackVariableDescription, 10> t = {a1_1, p1_256};
  90. TEST_LAYOUT(t, 8, 32, "2 256 1 11 p1_256:2700 272 1 4 a1_1",
  91. "LLLLLLLLLLLLLLLLLLLLLLLLLLLLLLLL1M1R",
  92. "LLLLLLLLLLLLLLLLLLLLLLLLLLLLLLLL1M1R");
  93. }
  94. {
  95. SmallVector<ASanStackVariableDescription, 10> t = {a1_1, a16_1, a41_1};
  96. TEST_LAYOUT(t, 8, 32, "3 32 1 4 a1_1 48 16 5 a16_1 80 41 7 a41_1:7",
  97. "LLLL1M00MM000001RRRR", "LLLL1MSSMMSS0001RRRR");
  98. }
  99. TEST_LAYOUT({a2_1}, 32, 32, "1 32 2 4 a2_1", "L2R", "L2R");
  100. TEST_LAYOUT({a9_1}, 32, 32, "1 32 9 4 a9_1", "L9R", "L9R");
  101. TEST_LAYOUT({a16_1}, 32, 32, "1 32 16 5 a16_1", "L16R", "LSR");
  102. TEST_LAYOUT({p1_256}, 32, 32, "1 256 1 11 p1_256:2700",
  103. "LLLLLLLL1R", "LLLLLLLL1R");
  104. TEST_LAYOUT({a41_1}, 32, 32, "1 32 41 7 a41_1:7", "L09R",
  105. "LS9R");
  106. TEST_LAYOUT({a105_1}, 32, 32, "1 32 105 6 a105_1", "L0009R",
  107. "LSSSSR");
  108. TEST_LAYOUT({a200_1}, 32, 32, "1 32 200 6 a200_1", "L0000008RR",
  109. "LSSSS008RR");
  110. {
  111. SmallVector<ASanStackVariableDescription, 10> t = {a1_1, p1_256};
  112. TEST_LAYOUT(t, 32, 32, "2 256 1 11 p1_256:2700 320 1 4 a1_1",
  113. "LLLLLLLL1M1R", "LLLLLLLL1M1R");
  114. }
  115. {
  116. SmallVector<ASanStackVariableDescription, 10> t = {a1_1, a16_1, a41_1};
  117. TEST_LAYOUT(t, 32, 32, "3 32 1 4 a1_1 96 16 5 a16_1 160 41 7 a41_1:7",
  118. "L1M16M09R", "L1MSMS9R");
  119. }
  120. #undef VAR
  121. #undef TEST_LAYOUT
  122. }