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| 1 // Copyright 2006-2009 the V8 project authors. All rights reserved. | |
| 2 // | |
| 3 // Tests of logging utilities from log-utils.h | |
| 4 | |
| 5 #ifdef ENABLE_LOGGING_AND_PROFILING | |
| 6 | |
| 7 #include "v8.h" | |
| 8 | |
| 9 #include "log-utils.h" | |
| 10 #include "cctest.h" | |
| 11 | |
| 12 using v8::internal::CStrVector; | |
| 13 using v8::internal::EmbeddedVector; | |
| 14 using v8::internal::LogDynamicBuffer; | |
| 15 using v8::internal::MutableCStrVector; | |
| 16 using v8::internal::ScopedVector; | |
| 17 using v8::internal::Vector; | |
| 18 using v8::internal::StrLength; | |
| 19 | |
| 20 // Fills 'ref_buffer' with test data: a sequence of two-digit | |
| 21 // hex numbers: '0001020304...'. Then writes 'ref_buffer' contents to 'dynabuf'. | |
| 22 static void WriteData(LogDynamicBuffer* dynabuf, Vector<char>* ref_buffer) { | |
| 23 static const char kHex[] = "0123456789ABCDEF"; | |
| 24 CHECK_GT(ref_buffer->length(), 0); | |
| 25 CHECK_GT(513, ref_buffer->length()); | |
| 26 for (int i = 0, half_len = ref_buffer->length() >> 1; i < half_len; ++i) { | |
| 27 (*ref_buffer)[i << 1] = kHex[i >> 4]; | |
| 28 (*ref_buffer)[(i << 1) + 1] = kHex[i & 15]; | |
| 29 } | |
| 30 if (ref_buffer->length() & 1) { | |
| 31 ref_buffer->last() = kHex[ref_buffer->length() >> 5]; | |
| 32 } | |
| 33 CHECK_EQ(ref_buffer->length(), | |
| 34 dynabuf->Write(ref_buffer->start(), ref_buffer->length())); | |
| 35 } | |
| 36 | |
| 37 | |
| 38 static int ReadData( | |
| 39 LogDynamicBuffer* dynabuf, int start_pos, i::Vector<char>* buffer) { | |
| 40 return dynabuf->Read(start_pos, buffer->start(), buffer->length()); | |
| 41 } | |
| 42 | |
| 43 | |
| 44 // Helper function used by CHECK_EQ to compare Vectors. Templatized to | |
| 45 // accept both "char" and "const char" vector contents. | |
| 46 template <typename E, typename V> | |
| 47 static inline void CheckEqualsHelper(const char* file, int line, | |
| 48 const char* expected_source, | |
| 49 const Vector<E>& expected, | |
| 50 const char* value_source, | |
| 51 const Vector<V>& value) { | |
| 52 if (expected.length() != value.length()) { | |
| 53 V8_Fatal(file, line, "CHECK_EQ(%s, %s) failed\n" | |
| 54 "# Vectors lengths differ: %d expected, %d found\n" | |
| 55 "# Expected: %.*s\n" | |
| 56 "# Found: %.*s", | |
| 57 expected_source, value_source, | |
| 58 expected.length(), value.length(), | |
| 59 expected.length(), expected.start(), | |
| 60 value.length(), value.start()); | |
| 61 } | |
| 62 if (strncmp(expected.start(), value.start(), expected.length()) != 0) { | |
| 63 V8_Fatal(file, line, "CHECK_EQ(%s, %s) failed\n" | |
| 64 "# Vectors contents differ:\n" | |
| 65 "# Expected: %.*s\n" | |
| 66 "# Found: %.*s", | |
| 67 expected_source, value_source, | |
| 68 expected.length(), expected.start(), | |
| 69 value.length(), value.start()); | |
| 70 } | |
| 71 } | |
| 72 | |
| 73 | |
| 74 TEST(DynaBufSingleBlock) { | |
| 75 LogDynamicBuffer dynabuf(32, 32, "", 0); | |
| 76 EmbeddedVector<char, 32> ref_buf; | |
| 77 WriteData(&dynabuf, &ref_buf); | |
| 78 EmbeddedVector<char, 32> buf; | |
| 79 CHECK_EQ(32, dynabuf.Read(0, buf.start(), buf.length())); | |
| 80 CHECK_EQ(32, ReadData(&dynabuf, 0, &buf)); | |
| 81 CHECK_EQ(ref_buf, buf); | |
| 82 | |
| 83 // Verify that we can't read and write past the end. | |
| 84 CHECK_EQ(0, dynabuf.Read(32, buf.start(), buf.length())); | |
| 85 CHECK_EQ(0, dynabuf.Write(buf.start(), buf.length())); | |
| 86 } | |
| 87 | |
| 88 | |
| 89 TEST(DynaBufCrossBlocks) { | |
| 90 LogDynamicBuffer dynabuf(32, 128, "", 0); | |
| 91 EmbeddedVector<char, 48> ref_buf; | |
| 92 WriteData(&dynabuf, &ref_buf); | |
| 93 CHECK_EQ(48, dynabuf.Write(ref_buf.start(), ref_buf.length())); | |
| 94 // Verify that we can't write data when remaining buffer space isn't enough. | |
| 95 CHECK_EQ(0, dynabuf.Write(ref_buf.start(), ref_buf.length())); | |
| 96 EmbeddedVector<char, 48> buf; | |
| 97 CHECK_EQ(48, ReadData(&dynabuf, 0, &buf)); | |
| 98 CHECK_EQ(ref_buf, buf); | |
| 99 CHECK_EQ(48, ReadData(&dynabuf, 48, &buf)); | |
| 100 CHECK_EQ(ref_buf, buf); | |
| 101 CHECK_EQ(0, ReadData(&dynabuf, 48 * 2, &buf)); | |
| 102 } | |
| 103 | |
| 104 | |
| 105 TEST(DynaBufReadTruncation) { | |
| 106 LogDynamicBuffer dynabuf(32, 128, "", 0); | |
| 107 EmbeddedVector<char, 128> ref_buf; | |
| 108 WriteData(&dynabuf, &ref_buf); | |
| 109 EmbeddedVector<char, 128> buf; | |
| 110 CHECK_EQ(128, ReadData(&dynabuf, 0, &buf)); | |
| 111 CHECK_EQ(ref_buf, buf); | |
| 112 // Try to read near the end with a buffer larger than remaining data size. | |
| 113 EmbeddedVector<char, 48> tail_buf; | |
| 114 CHECK_EQ(32, ReadData(&dynabuf, 128 - 32, &tail_buf)); | |
| 115 CHECK_EQ(ref_buf.SubVector(128 - 32, 128), tail_buf.SubVector(0, 32)); | |
| 116 } | |
| 117 | |
| 118 | |
| 119 TEST(DynaBufSealing) { | |
| 120 const char* seal = "Sealed"; | |
| 121 const int seal_size = StrLength(seal); | |
| 122 LogDynamicBuffer dynabuf(32, 128, seal, seal_size); | |
| 123 EmbeddedVector<char, 100> ref_buf; | |
| 124 WriteData(&dynabuf, &ref_buf); | |
| 125 // Try to write data that will not fit in the buffer. | |
| 126 CHECK_EQ(0, dynabuf.Write(ref_buf.start(), 128 - 100 - seal_size + 1)); | |
| 127 // Now the buffer is sealed, writing of any amount of data is forbidden. | |
| 128 CHECK_EQ(0, dynabuf.Write(ref_buf.start(), 1)); | |
| 129 EmbeddedVector<char, 100> buf; | |
| 130 CHECK_EQ(100, ReadData(&dynabuf, 0, &buf)); | |
| 131 CHECK_EQ(ref_buf, buf); | |
| 132 // Check the seal. | |
| 133 EmbeddedVector<char, 50> seal_buf; | |
| 134 CHECK_EQ(seal_size, ReadData(&dynabuf, 100, &seal_buf)); | |
| 135 CHECK_EQ(CStrVector(seal), seal_buf.SubVector(0, seal_size)); | |
| 136 // Verify that there's no data beyond the seal. | |
| 137 CHECK_EQ(0, ReadData(&dynabuf, 100 + seal_size, &buf)); | |
| 138 } | |
| 139 | |
| 140 #endif // ENABLE_LOGGING_AND_PROFILING | |
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