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Raphael Isemannb1dfad02018-08-01 06:04:48 +00001//===-- StreamTest.cpp ------------------------------------------*- C++ -*-===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9
10#include "lldb/Utility/StreamString.h"
11#include "gtest/gtest.h"
12
13using namespace lldb_private;
14
15namespace {
16struct StreamTest : ::testing::Test {
17 // Note: Stream is an abstract class, so we use StreamString to test it. To
18 // make it easier to change this later, only methods in this class explicitly
19 // refer to the StringStream class.
20 StreamString s;
21 // We return here a std::string because that way gtest can print better
22 // assertion messages.
23 std::string TakeValue() {
24 std::string result = s.GetString().str();
25 s.Clear();
26 return result;
27 }
28};
29}
30
31namespace {
32// A StreamTest where we expect the Stream output to be binary.
33struct BinaryStreamTest : StreamTest {
34 void SetUp() override {
35 s.GetFlags().Set(Stream::eBinary);
36 }
37};
38}
39
40TEST_F(StreamTest, ChangingByteOrder) {
41 s.SetByteOrder(lldb::eByteOrderPDP);
42 EXPECT_EQ(lldb::eByteOrderPDP, s.GetByteOrder());
43}
44
45TEST_F(StreamTest, PutChar) {
46 s.PutChar('a');
47 EXPECT_EQ("a", TakeValue());
48
49 s.PutChar('1');
50 EXPECT_EQ("1", TakeValue());
51}
52
53TEST_F(StreamTest, PutCharWhitespace) {
54 s.PutChar(' ');
55 EXPECT_EQ(" ", TakeValue());
56
57 s.PutChar('\n');
58 EXPECT_EQ("\n", TakeValue());
59
60 s.PutChar('\r');
61 EXPECT_EQ("\r", TakeValue());
62
63 s.PutChar('\t');
64 EXPECT_EQ("\t", TakeValue());
65}
66
67TEST_F(StreamTest, PutCString) {
68 s.PutCString("");
69 EXPECT_EQ("", TakeValue());
70
71 s.PutCString("foobar");
72 EXPECT_EQ("foobar", TakeValue());
73
74 s.PutCString(" ");
75 EXPECT_EQ(" ", TakeValue());
76}
77
78TEST_F(StreamTest, PutCStringWithStringRef) {
79 s.PutCString(llvm::StringRef(""));
80 EXPECT_EQ("", TakeValue());
81
82 s.PutCString(llvm::StringRef("foobar"));
83 EXPECT_EQ("foobar", TakeValue());
84
85 s.PutCString(llvm::StringRef(" "));
86 EXPECT_EQ(" ", TakeValue());
87}
88
89TEST_F(StreamTest, QuotedCString) {
90 s.QuotedCString("foo");
91 EXPECT_EQ(R"("foo")", TakeValue());
92
93 s.QuotedCString("ba r");
94 EXPECT_EQ(R"("ba r")", TakeValue());
95
96 s.QuotedCString(" ");
97 EXPECT_EQ(R"(" ")", TakeValue());
98}
99
100TEST_F(StreamTest, PutCharNull) {
101 s.PutChar('\0');
102 EXPECT_EQ(std::string("\0", 1), TakeValue());
103
104 s.PutChar('a');
105 EXPECT_EQ(std::string("a", 1), TakeValue());
106}
107
108TEST_F(StreamTest, PutCStringAsRawHex8) {
Raphael Isemannf4590de2018-08-01 21:07:18 +0000109 s.PutCStringAsRawHex8("");
110 EXPECT_EQ("", TakeValue());
111
Raphael Isemannb1dfad02018-08-01 06:04:48 +0000112 s.PutCStringAsRawHex8("foobar");
113 EXPECT_EQ("666f6f626172", TakeValue());
114
115 s.PutCStringAsRawHex8(" ");
116 EXPECT_EQ("20", TakeValue());
117}
118
119TEST_F(StreamTest, PutHex8) {
120 s.PutHex8((uint8_t)55);
121 EXPECT_EQ("37", TakeValue());
122 s.PutHex8(std::numeric_limits<uint8_t>::max());
123 EXPECT_EQ("ff", TakeValue());
124 s.PutHex8((uint8_t)0);
125 EXPECT_EQ("00", TakeValue());
126}
127
128TEST_F(StreamTest, PutNHex8) {
129 s.PutNHex8(0, (uint8_t)55);
130 EXPECT_EQ("", TakeValue());
131 s.PutNHex8(1, (uint8_t)55);
132 EXPECT_EQ("37", TakeValue());
133 s.PutNHex8(2, (uint8_t)55);
134 EXPECT_EQ("3737", TakeValue());
135 s.PutNHex8(1, (uint8_t)56);
136 EXPECT_EQ("38", TakeValue());
137}
138
139TEST_F(StreamTest, PutHex16ByteOrderLittle) {
140 s.PutHex16(0x1234U, lldb::eByteOrderLittle);
141 EXPECT_EQ("3412", TakeValue());
142 s.PutHex16(std::numeric_limits<uint16_t>::max(), lldb::eByteOrderLittle);
143 EXPECT_EQ("ffff", TakeValue());
144 s.PutHex16(0U, lldb::eByteOrderLittle);
145 EXPECT_EQ("0000", TakeValue());
146}
147
148TEST_F(StreamTest, PutHex16ByteOrderBig) {
149 s.PutHex16(0x1234U, lldb::eByteOrderBig);
150 EXPECT_EQ("1234", TakeValue());
151 s.PutHex16(std::numeric_limits<uint16_t>::max(), lldb::eByteOrderBig);
152 EXPECT_EQ("ffff", TakeValue());
153 s.PutHex16(0U, lldb::eByteOrderBig);
154 EXPECT_EQ("0000", TakeValue());
155}
156
157TEST_F(StreamTest, PutHex32ByteOrderLittle) {
158 s.PutHex32(0x12345678U, lldb::eByteOrderLittle);
159 EXPECT_EQ("78563412", TakeValue());
160 s.PutHex32(std::numeric_limits<uint32_t>::max(), lldb::eByteOrderLittle);
161 EXPECT_EQ("ffffffff", TakeValue());
162 s.PutHex32(0U, lldb::eByteOrderLittle);
163 EXPECT_EQ("00000000", TakeValue());
164}
165
166TEST_F(StreamTest, PutHex32ByteOrderBig) {
167 s.PutHex32(0x12345678U, lldb::eByteOrderBig);
168 EXPECT_EQ("12345678", TakeValue());
169 s.PutHex32(std::numeric_limits<uint32_t>::max(), lldb::eByteOrderBig);
170 EXPECT_EQ("ffffffff", TakeValue());
171 s.PutHex32(0U, lldb::eByteOrderBig);
172 EXPECT_EQ("00000000", TakeValue());
173}
174
175TEST_F(StreamTest, PutHex64ByteOrderLittle) {
176 s.PutHex64(0x1234567890ABCDEFU, lldb::eByteOrderLittle);
177 EXPECT_EQ("efcdab9078563412", TakeValue());
178 s.PutHex64(std::numeric_limits<uint64_t>::max(), lldb::eByteOrderLittle);
179 EXPECT_EQ("ffffffffffffffff", TakeValue());
180 s.PutHex64(0U, lldb::eByteOrderLittle);
181 EXPECT_EQ("0000000000000000", TakeValue());
182}
183
184TEST_F(StreamTest, PutHex64ByteOrderBig) {
185 s.PutHex64(0x1234567890ABCDEFU, lldb::eByteOrderBig);
186 EXPECT_EQ("1234567890abcdef", TakeValue());
187 s.PutHex64(std::numeric_limits<uint64_t>::max(), lldb::eByteOrderBig);
188 EXPECT_EQ("ffffffffffffffff", TakeValue());
189 s.PutHex64(0U, lldb::eByteOrderBig);
190 EXPECT_EQ("0000000000000000", TakeValue());
191}
192
Raphael Isemann0bb8d832018-08-01 17:12:58 +0000193TEST_F(StreamTest, PutMaxHex64ByteOrderBig) {
194 std::size_t bytes;
195 bytes = s.PutMaxHex64(0x12U, 1, lldb::eByteOrderBig);
196 EXPECT_EQ(2U, bytes);
197 bytes = s.PutMaxHex64(0x1234U, 2, lldb::eByteOrderBig);
198 EXPECT_EQ(4U, bytes);
199 bytes = s.PutMaxHex64(0x12345678U, 4, lldb::eByteOrderBig);
200 EXPECT_EQ(8U, bytes);
201 bytes = s.PutMaxHex64(0x1234567890ABCDEFU, 8, lldb::eByteOrderBig);
202 EXPECT_EQ(16U, bytes);
203 EXPECT_EQ("121234123456781234567890abcdef", TakeValue());
204}
205
206TEST_F(StreamTest, PutMaxHex64ByteOrderLittle) {
207 std::size_t bytes;
208 bytes = s.PutMaxHex64(0x12U, 1, lldb::eByteOrderLittle);
209 EXPECT_EQ(2U, bytes);
210 bytes = s.PutMaxHex64(0x1234U, 2, lldb::eByteOrderLittle);
211 EXPECT_EQ(4U, bytes);
212 bytes = s.PutMaxHex64(0x12345678U, 4, lldb::eByteOrderLittle);
213 EXPECT_EQ(8U, bytes);
214 bytes = s.PutMaxHex64(0x1234567890ABCDEFU, 8, lldb::eByteOrderLittle);
215 EXPECT_EQ(16U, bytes);
216 EXPECT_EQ("12341278563412efcdab9078563412", TakeValue());
217}
218
Raphael Isemannb1dfad02018-08-01 06:04:48 +0000219//------------------------------------------------------------------------------
220// Shift operator tests.
221//------------------------------------------------------------------------------
222
223TEST_F(StreamTest, ShiftOperatorChars) {
224 s << 'a' << 'b';
225 EXPECT_EQ("ab", TakeValue());
226}
227
228TEST_F(StreamTest, ShiftOperatorStrings) {
229 s << "cstring\n";
230 s << llvm::StringRef("llvm::StringRef\n");
231 EXPECT_EQ("cstring\nllvm::StringRef\n", TakeValue());
232}
233
234TEST_F(StreamTest, ShiftOperatorInts) {
235 s << std::numeric_limits<int8_t>::max() << " ";
236 s << std::numeric_limits<int16_t>::max() << " ";
237 s << std::numeric_limits<int32_t>::max() << " ";
238 s << std::numeric_limits<int64_t>::max();
239 EXPECT_EQ("127 32767 2147483647 9223372036854775807", TakeValue());
240}
241
242TEST_F(StreamTest, ShiftOperatorUInts) {
243 s << std::numeric_limits<uint8_t>::max() << " ";
244 s << std::numeric_limits<uint16_t>::max() << " ";
245 s << std::numeric_limits<uint32_t>::max() << " ";
246 s << std::numeric_limits<uint64_t>::max();
247 EXPECT_EQ("ff ffff ffffffff ffffffffffffffff", TakeValue());
248}
249
250TEST_F(StreamTest, ShiftOperatorPtr) {
251 // This test is a bit tricky because pretty much everything related to
252 // pointer printing seems to lead to UB or IB. So let's make the most basic
253 // test that just checks that we print *something*. This way we at least know
254 // that pointer printing doesn't do really bad things (e.g. crashing, reading
255 // OOB/uninitialized memory which the sanitizers would spot).
256
257 // Shift our own pointer to the output.
258 int i = 3;
259 int *ptr = &i;
260 s << ptr;
261
262 EXPECT_TRUE(!TakeValue().empty());
263}
264
265TEST_F(StreamTest, PutPtr) {
266 // See the ShiftOperatorPtr test for the rationale.
267 int i = 3;
268 int *ptr = &i;
269 s.PutPointer(ptr);
270
271 EXPECT_TRUE(!TakeValue().empty());
272}
273
274// Alias to make it more clear that 'invalid' means for the Stream interface
275// that it should use the host byte order.
276const static auto hostByteOrder = lldb::eByteOrderInvalid;
277
278//------------------------------------------------------------------------------
279// PutRawBytes/PutBytesAsRawHex tests.
280//------------------------------------------------------------------------------
281
282TEST_F(StreamTest, PutBytesAsRawHex8ToBigEndian) {
283 uint32_t value = 0x12345678;
284 s.PutBytesAsRawHex8(static_cast<void*>(&value), sizeof(value),
285 hostByteOrder, lldb::eByteOrderBig);
286 EXPECT_EQ("78563412", TakeValue());
287}
288
289TEST_F(StreamTest, PutRawBytesToBigEndian) {
290 uint32_t value = 0x12345678;
291 s.PutRawBytes(static_cast<void*>(&value), sizeof(value),
292 hostByteOrder, lldb::eByteOrderBig);
293 EXPECT_EQ("\x78\x56\x34\x12", TakeValue());
294}
295
296TEST_F(StreamTest, PutBytesAsRawHex8ToLittleEndian) {
297 uint32_t value = 0x12345678;
298 s.PutBytesAsRawHex8(static_cast<void*>(&value), sizeof(value),
299 hostByteOrder, lldb::eByteOrderLittle);
300 EXPECT_EQ("12345678", TakeValue());
301}
302
303TEST_F(StreamTest, PutRawBytesToLittleEndian) {
304 uint32_t value = 0x12345678;
305 s.PutRawBytes(static_cast<void*>(&value), sizeof(value),
306 hostByteOrder, lldb::eByteOrderLittle);
307 EXPECT_EQ("\x12\x34\x56\x78", TakeValue());
308}
309
310TEST_F(StreamTest, PutBytesAsRawHex8ToMixedEndian) {
311 uint32_t value = 0x12345678;
312 s.PutBytesAsRawHex8(static_cast<void*>(&value), sizeof(value),
313 hostByteOrder, lldb::eByteOrderPDP);
314
315 // FIXME: PDP byte order is not actually implemented but Stream just silently
316 // prints the value in some random byte order...
317#if 0
318 EXPECT_EQ("34127856", TakeValue());
319#endif
320}
321
322TEST_F(StreamTest, PutRawBytesToMixedEndian) {
323 uint32_t value = 0x12345678;
324 s.PutRawBytes(static_cast<void*>(&value), sizeof(value),
325 lldb::eByteOrderInvalid, lldb::eByteOrderPDP);
326
327 // FIXME: PDP byte order is not actually implemented but Stream just silently
328 // prints the value in some random byte order...
329#if 0
330 EXPECT_EQ("\x34\x12\x78\x56", TakeValue());
331#endif
332}
333
334//------------------------------------------------------------------------------
335// ULEB128 support for binary streams.
336//------------------------------------------------------------------------------
337
338TEST_F(BinaryStreamTest, PutULEB128OneByte) {
339 auto bytes = s.PutULEB128(0x74ULL);
340 EXPECT_EQ("\x74", TakeValue());
341 EXPECT_EQ(1U, bytes);
342}
343
344TEST_F(BinaryStreamTest, PutULEB128TwoBytes) {
345 auto bytes = s.PutULEB128(0x1985ULL);
346 EXPECT_EQ("\x85\x33", TakeValue());
347 EXPECT_EQ(2U, bytes);
348}
349
350TEST_F(BinaryStreamTest, PutULEB128ThreeBytes) {
351 auto bytes = s.PutULEB128(0x5023ULL);
352 EXPECT_EQ("\xA3\xA0\x1", TakeValue());
353 EXPECT_EQ(3U, bytes);
354}
355
356TEST_F(BinaryStreamTest, PutULEB128FourBytes) {
357 auto bytes = s.PutULEB128(0xA48032ULL);
358 EXPECT_EQ("\xB2\x80\x92\x5", TakeValue());
359 EXPECT_EQ(4U, bytes);
360}
361
362TEST_F(BinaryStreamTest, PutULEB128FiveBytes) {
363 auto bytes = s.PutULEB128(0x12345678ULL);
364 EXPECT_EQ("\xF8\xAC\xD1\x91\x1", TakeValue());
365 EXPECT_EQ(5U, bytes);
366}
367
368TEST_F(BinaryStreamTest, PutULEB128SixBytes) {
369 auto bytes = s.PutULEB128(0xABFE3FAFDFULL);
370 EXPECT_EQ("\xDF\xDF\xFE\xF1\xBF\x15", TakeValue());
371 EXPECT_EQ(6U, bytes);
372}
373
374TEST_F(BinaryStreamTest, PutULEB128SevenBytes) {
375 auto bytes = s.PutULEB128(0xDABFE3FAFDFULL);
376 EXPECT_EQ("\xDF\xDF\xFE\xF1\xBF\xB5\x3", TakeValue());
377 EXPECT_EQ(7U, bytes);
378}
379
380TEST_F(BinaryStreamTest, PutULEB128EightBytes) {
381 auto bytes = s.PutULEB128(0x7CDABFE3FAFDFULL);
382 EXPECT_EQ("\xDF\xDF\xFE\xF1\xBF\xB5\xF3\x3", TakeValue());
383 EXPECT_EQ(8U, bytes);
384}
385
386TEST_F(BinaryStreamTest, PutULEB128NineBytes) {
387 auto bytes = s.PutULEB128(0x327CDABFE3FAFDFULL);
388 EXPECT_EQ("\xDF\xDF\xFE\xF1\xBF\xB5\xF3\x93\x3", TakeValue());
389 EXPECT_EQ(9U, bytes);
390}
391
392TEST_F(BinaryStreamTest, PutULEB128MaxValue) {
393 auto bytes = s.PutULEB128(std::numeric_limits<uint64_t>::max());
394 EXPECT_EQ("\xFF\xFF\xFF\xFF\xFF\xFF\xFF\xFF\xFF\x1", TakeValue());
395 EXPECT_EQ(10U, bytes);
396}
397
398TEST_F(BinaryStreamTest, PutULEB128Zero) {
399 auto bytes = s.PutULEB128(0x0U);
400 EXPECT_EQ(std::string("\0", 1), TakeValue());
401 EXPECT_EQ(1U, bytes);
402}
403
404TEST_F(BinaryStreamTest, PutULEB128One) {
405 auto bytes = s.PutULEB128(0x1U);
406 EXPECT_EQ("\x1", TakeValue());
407 EXPECT_EQ(1U, bytes);
408}
409
410//------------------------------------------------------------------------------
411// SLEB128 support for binary streams.
412//------------------------------------------------------------------------------
413
414TEST_F(BinaryStreamTest, PutSLEB128OneByte) {
415 auto bytes = s.PutSLEB128(0x74LL);
416 EXPECT_EQ(std::string("\xF4\0", 2), TakeValue());
417 EXPECT_EQ(2U, bytes);
418}
419
420TEST_F(BinaryStreamTest, PutSLEB128TwoBytes) {
421 auto bytes = s.PutSLEB128(0x1985LL);
422 EXPECT_EQ("\x85\x33", TakeValue());
423 EXPECT_EQ(2U, bytes);
424}
425
426TEST_F(BinaryStreamTest, PutSLEB128ThreeBytes) {
427 auto bytes = s.PutSLEB128(0x5023LL);
428 EXPECT_EQ("\xA3\xA0\x1", TakeValue());
429 EXPECT_EQ(3U, bytes);
430}
431
432TEST_F(BinaryStreamTest, PutSLEB128FourBytes) {
433 auto bytes = s.PutSLEB128(0xA48032LL);
434 EXPECT_EQ("\xB2\x80\x92\x5", TakeValue());
435 EXPECT_EQ(4U, bytes);
436}
437
438TEST_F(BinaryStreamTest, PutSLEB128FiveBytes) {
439 auto bytes = s.PutSLEB128(0x12345678LL);
440 EXPECT_EQ("\xF8\xAC\xD1\x91\x1", TakeValue());
441 EXPECT_EQ(5U, bytes);
442}
443
444TEST_F(BinaryStreamTest, PutSLEB128SixBytes) {
445 auto bytes = s.PutSLEB128(0xABFE3FAFDFLL);
446 EXPECT_EQ("\xDF\xDF\xFE\xF1\xBF\x15", TakeValue());
447 EXPECT_EQ(6U, bytes);
448}
449
450TEST_F(BinaryStreamTest, PutSLEB128SevenBytes) {
451 auto bytes = s.PutSLEB128(0xDABFE3FAFDFLL);
452 EXPECT_EQ("\xDF\xDF\xFE\xF1\xBF\xB5\x3", TakeValue());
453 EXPECT_EQ(7U, bytes);
454}
455
456TEST_F(BinaryStreamTest, PutSLEB128EightBytes) {
457 auto bytes = s.PutSLEB128(0x7CDABFE3FAFDFLL);
458 EXPECT_EQ("\xDF\xDF\xFE\xF1\xBF\xB5\xF3\x3", TakeValue());
459 EXPECT_EQ(8U, bytes);
460}
461
462TEST_F(BinaryStreamTest, PutSLEB128NineBytes) {
463 auto bytes = s.PutSLEB128(0x327CDABFE3FAFDFLL);
464 EXPECT_EQ("\xDF\xDF\xFE\xF1\xBF\xB5\xF3\x93\x3", TakeValue());
465 EXPECT_EQ(9U, bytes);
466}
467
468TEST_F(BinaryStreamTest, PutSLEB128MaxValue) {
469 auto bytes = s.PutSLEB128(std::numeric_limits<int64_t>::max());
470 EXPECT_EQ(std::string("\xFF\xFF\xFF\xFF\xFF\xFF\xFF\xFF\xFF\0", 10), TakeValue());
471 EXPECT_EQ(10U, bytes);
472}
473
474TEST_F(BinaryStreamTest, PutSLEB128Zero) {
475 auto bytes = s.PutSLEB128(0x0);
476 EXPECT_EQ(std::string("\0", 1), TakeValue());
477 EXPECT_EQ(1U, bytes);
478}
479
480TEST_F(BinaryStreamTest, PutSLEB128One) {
481 auto bytes = s.PutSLEB128(0x1);
482 EXPECT_EQ(std::string("\x1", 1), TakeValue());
483 EXPECT_EQ(1U, bytes);
484}
485
486//------------------------------------------------------------------------------
487// SLEB128/ULEB128 support for non-binary streams.
488//------------------------------------------------------------------------------
489
490// The logic for this is very simple, so it should be enough to test some basic
491// use cases.
492
493TEST_F(StreamTest, PutULEB128) {
494 auto bytes = s.PutULEB128(0x74ULL);
495 EXPECT_EQ("0x74", TakeValue());
496 EXPECT_EQ(4U, bytes);
497}
498
499TEST_F(StreamTest, PutSLEB128) {
500 auto bytes = s.PutSLEB128(0x1985LL);
501 EXPECT_EQ("0x6533", TakeValue());
502 EXPECT_EQ(6U, bytes);
503}