blob: 86c4f7fa5c09d1b652e72a0784067a5b006ef595 [file] [log] [blame]
Noah Richardsbbf7c862015-04-21 16:30:13 -07001/*
2 * Copyright 2015 The WebRTC Project Authors. All rights reserved.
3 *
4 * Use of this source code is governed by a BSD-style license
5 * that can be found in the LICENSE file in the root of the source
6 * tree. An additional intellectual property rights grant can be found
7 * in the file PATENTS. All contributing project authors may
8 * be found in the AUTHORS file in the root of the source tree.
9 */
10
Steve Anton10542f22019-01-11 09:11:00 -080011#include "rtc_base/bit_buffer.h"
Yves Gerey3e707812018-11-28 16:47:49 +010012
13#include <limits>
14
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020015#include "rtc_base/arraysize.h"
Steve Anton10542f22019-01-11 09:11:00 -080016#include "rtc_base/byte_buffer.h"
Danil Chapovalova2b30d82019-07-03 14:41:50 +020017#include "test/gmock.h"
Yves Gerey3e707812018-11-28 16:47:49 +010018#include "test/gtest.h"
Noah Richardsbbf7c862015-04-21 16:30:13 -070019
20namespace rtc {
21
Danil Chapovalova2b30d82019-07-03 14:41:50 +020022using ::testing::ElementsAre;
23
Noah Richardsbbf7c862015-04-21 16:30:13 -070024TEST(BitBufferTest, ConsumeBits) {
Peter Boström0c4e06b2015-10-07 12:23:21 +020025 const uint8_t bytes[64] = {0};
Noah Richardsbbf7c862015-04-21 16:30:13 -070026 BitBuffer buffer(bytes, 32);
Peter Boström0c4e06b2015-10-07 12:23:21 +020027 uint64_t total_bits = 32 * 8;
Noah Richardsbbf7c862015-04-21 16:30:13 -070028 EXPECT_EQ(total_bits, buffer.RemainingBitCount());
29 EXPECT_TRUE(buffer.ConsumeBits(3));
30 total_bits -= 3;
31 EXPECT_EQ(total_bits, buffer.RemainingBitCount());
32 EXPECT_TRUE(buffer.ConsumeBits(3));
33 total_bits -= 3;
34 EXPECT_EQ(total_bits, buffer.RemainingBitCount());
35 EXPECT_TRUE(buffer.ConsumeBits(15));
36 total_bits -= 15;
37 EXPECT_EQ(total_bits, buffer.RemainingBitCount());
38 EXPECT_TRUE(buffer.ConsumeBits(37));
39 total_bits -= 37;
40 EXPECT_EQ(total_bits, buffer.RemainingBitCount());
41
42 EXPECT_FALSE(buffer.ConsumeBits(32 * 8));
43 EXPECT_EQ(total_bits, buffer.RemainingBitCount());
44}
45
46TEST(BitBufferTest, ReadBytesAligned) {
Peter Boström0c4e06b2015-10-07 12:23:21 +020047 const uint8_t bytes[] = {0x0A, 0xBC, 0xDE, 0xF1, 0x23, 0x45, 0x67, 0x89};
48 uint8_t val8;
49 uint16_t val16;
50 uint32_t val32;
Noah Richardsbbf7c862015-04-21 16:30:13 -070051 BitBuffer buffer(bytes, 8);
52 EXPECT_TRUE(buffer.ReadUInt8(&val8));
53 EXPECT_EQ(0x0Au, val8);
54 EXPECT_TRUE(buffer.ReadUInt8(&val8));
55 EXPECT_EQ(0xBCu, val8);
56 EXPECT_TRUE(buffer.ReadUInt16(&val16));
57 EXPECT_EQ(0xDEF1u, val16);
58 EXPECT_TRUE(buffer.ReadUInt32(&val32));
59 EXPECT_EQ(0x23456789u, val32);
60}
61
62TEST(BitBufferTest, ReadBytesOffset4) {
Peter Boström0c4e06b2015-10-07 12:23:21 +020063 const uint8_t bytes[] = {0x0A, 0xBC, 0xDE, 0xF1, 0x23,
64 0x45, 0x67, 0x89, 0x0A};
65 uint8_t val8;
66 uint16_t val16;
67 uint32_t val32;
Noah Richardsbbf7c862015-04-21 16:30:13 -070068 BitBuffer buffer(bytes, 9);
69 EXPECT_TRUE(buffer.ConsumeBits(4));
70
71 EXPECT_TRUE(buffer.ReadUInt8(&val8));
72 EXPECT_EQ(0xABu, val8);
73 EXPECT_TRUE(buffer.ReadUInt8(&val8));
74 EXPECT_EQ(0xCDu, val8);
75 EXPECT_TRUE(buffer.ReadUInt16(&val16));
76 EXPECT_EQ(0xEF12u, val16);
77 EXPECT_TRUE(buffer.ReadUInt32(&val32));
78 EXPECT_EQ(0x34567890u, val32);
79}
80
81TEST(BitBufferTest, ReadBytesOffset3) {
82 // The pattern we'll check against is counting down from 0b1111. It looks
83 // weird here because it's all offset by 3.
84 // Byte pattern is:
85 // 56701234
86 // 0b00011111,
87 // 0b11011011,
88 // 0b10010111,
89 // 0b01010011,
90 // 0b00001110,
91 // 0b11001010,
92 // 0b10000110,
93 // 0b01000010
94 // xxxxx <-- last 5 bits unused.
95
96 // The bytes. It almost looks like counting down by two at a time, except the
97 // jump at 5->3->0, since that's when the high bit is turned off.
Peter Boström0c4e06b2015-10-07 12:23:21 +020098 const uint8_t bytes[] = {0x1F, 0xDB, 0x97, 0x53, 0x0E, 0xCA, 0x86, 0x42};
Noah Richardsbbf7c862015-04-21 16:30:13 -070099
Peter Boström0c4e06b2015-10-07 12:23:21 +0200100 uint8_t val8;
101 uint16_t val16;
102 uint32_t val32;
Noah Richardsbbf7c862015-04-21 16:30:13 -0700103 BitBuffer buffer(bytes, 8);
104 EXPECT_TRUE(buffer.ConsumeBits(3));
105 EXPECT_TRUE(buffer.ReadUInt8(&val8));
106 EXPECT_EQ(0xFEu, val8);
107 EXPECT_TRUE(buffer.ReadUInt16(&val16));
108 EXPECT_EQ(0xDCBAu, val16);
109 EXPECT_TRUE(buffer.ReadUInt32(&val32));
110 EXPECT_EQ(0x98765432u, val32);
Peter Boström0c4e06b2015-10-07 12:23:21 +0200111 // 5 bits left unread. Not enough to read a uint8_t.
Noah Richardsbbf7c862015-04-21 16:30:13 -0700112 EXPECT_EQ(5u, buffer.RemainingBitCount());
113 EXPECT_FALSE(buffer.ReadUInt8(&val8));
114}
115
116TEST(BitBufferTest, ReadBits) {
117 // Bit values are:
118 // 0b01001101,
119 // 0b00110010
Peter Boström0c4e06b2015-10-07 12:23:21 +0200120 const uint8_t bytes[] = {0x4D, 0x32};
Noah Richardsbbf7c862015-04-21 16:30:13 -0700121 uint32_t val;
122 BitBuffer buffer(bytes, 2);
123 EXPECT_TRUE(buffer.ReadBits(&val, 3));
124 // 0b010
125 EXPECT_EQ(0x2u, val);
126 EXPECT_TRUE(buffer.ReadBits(&val, 2));
127 // 0b01
128 EXPECT_EQ(0x1u, val);
129 EXPECT_TRUE(buffer.ReadBits(&val, 7));
130 // 0b1010011
131 EXPECT_EQ(0x53u, val);
132 EXPECT_TRUE(buffer.ReadBits(&val, 2));
133 // 0b00
134 EXPECT_EQ(0x0u, val);
135 EXPECT_TRUE(buffer.ReadBits(&val, 1));
136 // 0b1
137 EXPECT_EQ(0x1u, val);
138 EXPECT_TRUE(buffer.ReadBits(&val, 1));
139 // 0b0
140 EXPECT_EQ(0x0u, val);
141
142 EXPECT_FALSE(buffer.ReadBits(&val, 1));
143}
144
Björn Terelius39284362021-05-11 15:30:12 +0200145TEST(BitBufferTest, ReadBits64) {
146 const uint8_t bytes[] = {0x4D, 0x32, 0xAB, 0x54, 0x00, 0xFF, 0xFE, 0x01,
147 0xAB, 0xCD, 0xEF, 0x01, 0x23, 0x45, 0x67, 0x89};
148 BitBuffer buffer(bytes, 16);
149 uint64_t val;
150
151 // Peek and read first 33 bits.
152 EXPECT_TRUE(buffer.PeekBits(&val, 33));
153 EXPECT_EQ(0x4D32AB5400FFFE01ull >> (64 - 33), val);
154 val = 0;
155 EXPECT_TRUE(buffer.ReadBits(&val, 33));
156 EXPECT_EQ(0x4D32AB5400FFFE01ull >> (64 - 33), val);
157
158 // Peek and read next 31 bits.
159 constexpr uint64_t kMask31Bits = (1ull << 32) - 1;
160 EXPECT_TRUE(buffer.PeekBits(&val, 31));
161 EXPECT_EQ(0x4D32AB5400FFFE01ull & kMask31Bits, val);
162 val = 0;
163 EXPECT_TRUE(buffer.ReadBits(&val, 31));
164 EXPECT_EQ(0x4D32AB5400FFFE01ull & kMask31Bits, val);
165
166 // Peek and read remaining 64 bits.
167 EXPECT_TRUE(buffer.PeekBits(&val, 64));
168 EXPECT_EQ(0xABCDEF0123456789ull, val);
169 val = 0;
170 EXPECT_TRUE(buffer.ReadBits(&val, 64));
171 EXPECT_EQ(0xABCDEF0123456789ull, val);
172
173 // Nothing more to read.
174 EXPECT_FALSE(buffer.ReadBits(&val, 1));
175}
176
Tommia5e07cc2020-05-26 21:40:37 +0200177TEST(BitBufferDeathTest, SetOffsetValues) {
Peter Boström0c4e06b2015-10-07 12:23:21 +0200178 uint8_t bytes[4] = {0};
Noah Richards86153c22015-04-28 15:13:44 -0700179 BitBufferWriter buffer(bytes, 4);
180
181 size_t byte_offset, bit_offset;
182 // Bit offsets are [0,7].
183 EXPECT_TRUE(buffer.Seek(0, 0));
184 EXPECT_TRUE(buffer.Seek(0, 7));
185 buffer.GetCurrentOffset(&byte_offset, &bit_offset);
186 EXPECT_EQ(0u, byte_offset);
187 EXPECT_EQ(7u, bit_offset);
188 EXPECT_FALSE(buffer.Seek(0, 8));
189 buffer.GetCurrentOffset(&byte_offset, &bit_offset);
190 EXPECT_EQ(0u, byte_offset);
191 EXPECT_EQ(7u, bit_offset);
192 // Byte offsets are [0,length]. At byte offset length, the bit offset must be
193 // 0.
194 EXPECT_TRUE(buffer.Seek(0, 0));
195 EXPECT_TRUE(buffer.Seek(2, 4));
196 buffer.GetCurrentOffset(&byte_offset, &bit_offset);
197 EXPECT_EQ(2u, byte_offset);
198 EXPECT_EQ(4u, bit_offset);
199 EXPECT_TRUE(buffer.Seek(4, 0));
200 EXPECT_FALSE(buffer.Seek(5, 0));
201 buffer.GetCurrentOffset(&byte_offset, &bit_offset);
202 EXPECT_EQ(4u, byte_offset);
203 EXPECT_EQ(0u, bit_offset);
204 EXPECT_FALSE(buffer.Seek(4, 1));
205
Yves Gerey665174f2018-06-19 15:03:05 +0200206// Disable death test on Android because it relies on fork() and doesn't play
207// nicely.
kwiberg77eab702016-09-28 17:42:01 -0700208#if GTEST_HAS_DEATH_TEST
Donald E Curtis97bce582015-05-19 13:18:00 -0700209#if !defined(WEBRTC_ANDROID)
deadbeef37f5ecf2017-02-27 14:06:41 -0800210 // Passing a null out parameter is death.
211 EXPECT_DEATH(buffer.GetCurrentOffset(&byte_offset, nullptr), "");
Donald E Curtis97bce582015-05-19 13:18:00 -0700212#endif
Zeke Chin2d3b7e22015-07-14 12:55:44 -0700213#endif
Noah Richards86153c22015-04-28 15:13:44 -0700214}
215
Danil Chapovalova2b30d82019-07-03 14:41:50 +0200216TEST(BitBufferTest, ReadNonSymmetricSameNumberOfBitsWhenNumValuesPowerOf2) {
217 const uint8_t bytes[2] = {0xf3, 0xa0};
218 BitBuffer reader(bytes, 2);
219
220 uint32_t values[4];
221 ASSERT_EQ(reader.RemainingBitCount(), 16u);
222 EXPECT_TRUE(reader.ReadNonSymmetric(&values[0], /*num_values=*/1 << 4));
223 EXPECT_TRUE(reader.ReadNonSymmetric(&values[1], /*num_values=*/1 << 4));
224 EXPECT_TRUE(reader.ReadNonSymmetric(&values[2], /*num_values=*/1 << 4));
225 EXPECT_TRUE(reader.ReadNonSymmetric(&values[3], /*num_values=*/1 << 4));
226 ASSERT_EQ(reader.RemainingBitCount(), 0u);
227
228 EXPECT_THAT(values, ElementsAre(0xf, 0x3, 0xa, 0x0));
229}
230
231TEST(BitBufferWriterTest,
232 WriteNonSymmetricSameNumberOfBitsWhenNumValuesPowerOf2) {
233 uint8_t bytes[2] = {};
234 BitBufferWriter writer(bytes, 2);
235
236 ASSERT_EQ(writer.RemainingBitCount(), 16u);
237 EXPECT_TRUE(writer.WriteNonSymmetric(0xf, /*num_values=*/1 << 4));
238 ASSERT_EQ(writer.RemainingBitCount(), 12u);
239 EXPECT_TRUE(writer.WriteNonSymmetric(0x3, /*num_values=*/1 << 4));
240 ASSERT_EQ(writer.RemainingBitCount(), 8u);
241 EXPECT_TRUE(writer.WriteNonSymmetric(0xa, /*num_values=*/1 << 4));
242 ASSERT_EQ(writer.RemainingBitCount(), 4u);
243 EXPECT_TRUE(writer.WriteNonSymmetric(0x0, /*num_values=*/1 << 4));
244 ASSERT_EQ(writer.RemainingBitCount(), 0u);
245
246 EXPECT_THAT(bytes, ElementsAre(0xf3, 0xa0));
247}
248
249TEST(BitBufferWriterTest, NonSymmetricReadsMatchesWrites) {
250 uint8_t bytes[2] = {};
251 BitBufferWriter writer(bytes, 2);
252
253 EXPECT_EQ(BitBufferWriter::SizeNonSymmetricBits(/*val=*/1, /*num_values=*/6),
254 2u);
255 EXPECT_EQ(BitBufferWriter::SizeNonSymmetricBits(/*val=*/2, /*num_values=*/6),
256 3u);
257 // Values [0, 1] can fit into two bit.
258 ASSERT_EQ(writer.RemainingBitCount(), 16u);
259 EXPECT_TRUE(writer.WriteNonSymmetric(/*val=*/0, /*num_values=*/6));
260 ASSERT_EQ(writer.RemainingBitCount(), 14u);
261 EXPECT_TRUE(writer.WriteNonSymmetric(/*val=*/1, /*num_values=*/6));
262 ASSERT_EQ(writer.RemainingBitCount(), 12u);
263 // Values [2, 5] require 3 bits.
264 EXPECT_TRUE(writer.WriteNonSymmetric(/*val=*/2, /*num_values=*/6));
265 ASSERT_EQ(writer.RemainingBitCount(), 9u);
266 EXPECT_TRUE(writer.WriteNonSymmetric(/*val=*/3, /*num_values=*/6));
267 ASSERT_EQ(writer.RemainingBitCount(), 6u);
268 EXPECT_TRUE(writer.WriteNonSymmetric(/*val=*/4, /*num_values=*/6));
269 ASSERT_EQ(writer.RemainingBitCount(), 3u);
270 EXPECT_TRUE(writer.WriteNonSymmetric(/*val=*/5, /*num_values=*/6));
271 ASSERT_EQ(writer.RemainingBitCount(), 0u);
272
273 // Bit values are
274 // 00.01.100.101.110.111 = 00011001|01110111 = 0x19|77
275 EXPECT_THAT(bytes, ElementsAre(0x19, 0x77));
276
277 rtc::BitBuffer reader(bytes, 2);
278 uint32_t values[6];
279 EXPECT_TRUE(reader.ReadNonSymmetric(&values[0], /*num_values=*/6));
280 EXPECT_TRUE(reader.ReadNonSymmetric(&values[1], /*num_values=*/6));
281 EXPECT_TRUE(reader.ReadNonSymmetric(&values[2], /*num_values=*/6));
282 EXPECT_TRUE(reader.ReadNonSymmetric(&values[3], /*num_values=*/6));
283 EXPECT_TRUE(reader.ReadNonSymmetric(&values[4], /*num_values=*/6));
284 EXPECT_TRUE(reader.ReadNonSymmetric(&values[5], /*num_values=*/6));
285
286 EXPECT_THAT(values, ElementsAre(0, 1, 2, 3, 4, 5));
287}
288
Danil Chapovalova9e1b492020-07-08 11:24:19 +0200289TEST(BitBufferTest, ReadNonSymmetricOnlyValueConsumesNoBits) {
290 const uint8_t bytes[2] = {};
291 BitBuffer reader(bytes, 2);
292 uint32_t value = 0xFFFFFFFF;
293 ASSERT_EQ(reader.RemainingBitCount(), 16u);
294
295 EXPECT_TRUE(reader.ReadNonSymmetric(&value, /*num_values=*/1));
296
297 EXPECT_EQ(value, 0u);
298 EXPECT_EQ(reader.RemainingBitCount(), 16u);
299}
300
301TEST(BitBufferWriterTest, WriteNonSymmetricOnlyValueConsumesNoBits) {
302 uint8_t bytes[2] = {};
303 BitBufferWriter writer(bytes, 2);
304 ASSERT_EQ(writer.RemainingBitCount(), 16u);
305
306 EXPECT_TRUE(writer.WriteNonSymmetric(0, /*num_values=*/1));
307
308 EXPECT_EQ(writer.RemainingBitCount(), 16u);
309}
310
Peter Boström0c4e06b2015-10-07 12:23:21 +0200311uint64_t GolombEncoded(uint32_t val) {
Noah Richardsbbf7c862015-04-21 16:30:13 -0700312 val++;
Peter Boström0c4e06b2015-10-07 12:23:21 +0200313 uint32_t bit_counter = val;
314 uint64_t bit_count = 0;
Noah Richardsbbf7c862015-04-21 16:30:13 -0700315 while (bit_counter > 0) {
316 bit_count++;
317 bit_counter >>= 1;
318 }
Peter Boström0c4e06b2015-10-07 12:23:21 +0200319 return static_cast<uint64_t>(val) << (64 - (bit_count * 2 - 1));
Noah Richardsbbf7c862015-04-21 16:30:13 -0700320}
321
Noah Richards86153c22015-04-28 15:13:44 -0700322TEST(BitBufferTest, GolombUint32Values) {
jbauchf1f87202016-03-30 06:43:37 -0700323 ByteBufferWriter byteBuffer;
Noah Richards86153c22015-04-28 15:13:44 -0700324 byteBuffer.Resize(16);
Peter Boström0c4e06b2015-10-07 12:23:21 +0200325 BitBuffer buffer(reinterpret_cast<const uint8_t*>(byteBuffer.Data()),
Noah Richards86153c22015-04-28 15:13:44 -0700326 byteBuffer.Capacity());
Peter Boström0c4e06b2015-10-07 12:23:21 +0200327 // Test over the uint32_t range with a large enough step that the test doesn't
Noah Richards86153c22015-04-28 15:13:44 -0700328 // take forever. Around 20,000 iterations should do.
Peter Boström0c4e06b2015-10-07 12:23:21 +0200329 const int kStep = std::numeric_limits<uint32_t>::max() / 20000;
330 for (uint32_t i = 0; i < std::numeric_limits<uint32_t>::max() - kStep;
Noah Richards86153c22015-04-28 15:13:44 -0700331 i += kStep) {
Peter Boström0c4e06b2015-10-07 12:23:21 +0200332 uint64_t encoded_val = GolombEncoded(i);
Noah Richards86153c22015-04-28 15:13:44 -0700333 byteBuffer.Clear();
Noah Richardsbbf7c862015-04-21 16:30:13 -0700334 byteBuffer.WriteUInt64(encoded_val);
Peter Boström0c4e06b2015-10-07 12:23:21 +0200335 uint32_t decoded_val;
Noah Richards86153c22015-04-28 15:13:44 -0700336 EXPECT_TRUE(buffer.Seek(0, 0));
Noah Richardsbbf7c862015-04-21 16:30:13 -0700337 EXPECT_TRUE(buffer.ReadExponentialGolomb(&decoded_val));
Noah Richards86153c22015-04-28 15:13:44 -0700338 EXPECT_EQ(i, decoded_val);
Noah Richardsbbf7c862015-04-21 16:30:13 -0700339 }
340}
341
Peter Boström8c266e62015-09-24 15:06:50 +0200342TEST(BitBufferTest, SignedGolombValues) {
343 uint8_t golomb_bits[] = {
344 0x80, // 1
345 0x40, // 010
346 0x60, // 011
347 0x20, // 00100
348 0x38, // 00111
349 };
350 int32_t expected[] = {0, 1, -1, 2, -3};
351 for (size_t i = 0; i < sizeof(golomb_bits); ++i) {
352 BitBuffer buffer(&golomb_bits[i], 1);
353 int32_t decoded_val;
354 ASSERT_TRUE(buffer.ReadSignedExponentialGolomb(&decoded_val));
355 EXPECT_EQ(expected[i], decoded_val)
356 << "Mismatch in expected/decoded value for golomb_bits[" << i
357 << "]: " << static_cast<int>(golomb_bits[i]);
358 }
359}
360
Noah Richardsbbf7c862015-04-21 16:30:13 -0700361TEST(BitBufferTest, NoGolombOverread) {
Peter Boström0c4e06b2015-10-07 12:23:21 +0200362 const uint8_t bytes[] = {0x00, 0xFF, 0xFF};
Noah Richardsbbf7c862015-04-21 16:30:13 -0700363 // Make sure the bit buffer correctly enforces byte length on golomb reads.
364 // If it didn't, the above buffer would be valid at 3 bytes.
365 BitBuffer buffer(bytes, 1);
Peter Boström0c4e06b2015-10-07 12:23:21 +0200366 uint32_t decoded_val;
Noah Richardsbbf7c862015-04-21 16:30:13 -0700367 EXPECT_FALSE(buffer.ReadExponentialGolomb(&decoded_val));
368
369 BitBuffer longer_buffer(bytes, 2);
370 EXPECT_FALSE(longer_buffer.ReadExponentialGolomb(&decoded_val));
371
372 BitBuffer longest_buffer(bytes, 3);
373 EXPECT_TRUE(longest_buffer.ReadExponentialGolomb(&decoded_val));
374 // Golomb should have read 9 bits, so 0x01FF, and since it is golomb, the
375 // result is 0x01FF - 1 = 0x01FE.
376 EXPECT_EQ(0x01FEu, decoded_val);
377}
378
Noah Richards86153c22015-04-28 15:13:44 -0700379TEST(BitBufferWriterTest, SymmetricReadWrite) {
Peter Boström0c4e06b2015-10-07 12:23:21 +0200380 uint8_t bytes[16] = {0};
Noah Richards86153c22015-04-28 15:13:44 -0700381 BitBufferWriter buffer(bytes, 4);
382
383 // Write some bit data at various sizes.
384 EXPECT_TRUE(buffer.WriteBits(0x2u, 3));
385 EXPECT_TRUE(buffer.WriteBits(0x1u, 2));
386 EXPECT_TRUE(buffer.WriteBits(0x53u, 7));
387 EXPECT_TRUE(buffer.WriteBits(0x0u, 2));
388 EXPECT_TRUE(buffer.WriteBits(0x1u, 1));
389 EXPECT_TRUE(buffer.WriteBits(0x1ABCDu, 17));
390 // That should be all that fits in the buffer.
391 EXPECT_FALSE(buffer.WriteBits(1, 1));
392
393 EXPECT_TRUE(buffer.Seek(0, 0));
Peter Boström0c4e06b2015-10-07 12:23:21 +0200394 uint32_t val;
Noah Richards86153c22015-04-28 15:13:44 -0700395 EXPECT_TRUE(buffer.ReadBits(&val, 3));
396 EXPECT_EQ(0x2u, val);
397 EXPECT_TRUE(buffer.ReadBits(&val, 2));
398 EXPECT_EQ(0x1u, val);
399 EXPECT_TRUE(buffer.ReadBits(&val, 7));
400 EXPECT_EQ(0x53u, val);
401 EXPECT_TRUE(buffer.ReadBits(&val, 2));
402 EXPECT_EQ(0x0u, val);
403 EXPECT_TRUE(buffer.ReadBits(&val, 1));
404 EXPECT_EQ(0x1u, val);
405 EXPECT_TRUE(buffer.ReadBits(&val, 17));
406 EXPECT_EQ(0x1ABCDu, val);
407 // And there should be nothing left.
408 EXPECT_FALSE(buffer.ReadBits(&val, 1));
409}
410
411TEST(BitBufferWriterTest, SymmetricBytesMisaligned) {
Peter Boström0c4e06b2015-10-07 12:23:21 +0200412 uint8_t bytes[16] = {0};
Noah Richards86153c22015-04-28 15:13:44 -0700413 BitBufferWriter buffer(bytes, 16);
414
415 // Offset 3, to get things misaligned.
416 EXPECT_TRUE(buffer.ConsumeBits(3));
417 EXPECT_TRUE(buffer.WriteUInt8(0x12u));
418 EXPECT_TRUE(buffer.WriteUInt16(0x3456u));
419 EXPECT_TRUE(buffer.WriteUInt32(0x789ABCDEu));
420
421 buffer.Seek(0, 3);
Peter Boström0c4e06b2015-10-07 12:23:21 +0200422 uint8_t val8;
423 uint16_t val16;
424 uint32_t val32;
Noah Richards86153c22015-04-28 15:13:44 -0700425 EXPECT_TRUE(buffer.ReadUInt8(&val8));
426 EXPECT_EQ(0x12u, val8);
427 EXPECT_TRUE(buffer.ReadUInt16(&val16));
428 EXPECT_EQ(0x3456u, val16);
429 EXPECT_TRUE(buffer.ReadUInt32(&val32));
430 EXPECT_EQ(0x789ABCDEu, val32);
431}
432
433TEST(BitBufferWriterTest, SymmetricGolomb) {
434 char test_string[] = "my precious";
Peter Boström0c4e06b2015-10-07 12:23:21 +0200435 uint8_t bytes[64] = {0};
Noah Richards86153c22015-04-28 15:13:44 -0700436 BitBufferWriter buffer(bytes, 64);
tfarina5237aaf2015-11-10 23:44:30 -0800437 for (size_t i = 0; i < arraysize(test_string); ++i) {
Noah Richards86153c22015-04-28 15:13:44 -0700438 EXPECT_TRUE(buffer.WriteExponentialGolomb(test_string[i]));
439 }
440 buffer.Seek(0, 0);
tfarina5237aaf2015-11-10 23:44:30 -0800441 for (size_t i = 0; i < arraysize(test_string); ++i) {
Peter Boström0c4e06b2015-10-07 12:23:21 +0200442 uint32_t val;
Noah Richards86153c22015-04-28 15:13:44 -0700443 EXPECT_TRUE(buffer.ReadExponentialGolomb(&val));
Peter Boström0c4e06b2015-10-07 12:23:21 +0200444 EXPECT_LE(val, std::numeric_limits<uint8_t>::max());
Noah Richards86153c22015-04-28 15:13:44 -0700445 EXPECT_EQ(test_string[i], static_cast<char>(val));
446 }
447}
448
449TEST(BitBufferWriterTest, WriteClearsBits) {
Peter Boström0c4e06b2015-10-07 12:23:21 +0200450 uint8_t bytes[] = {0xFF, 0xFF};
Noah Richards86153c22015-04-28 15:13:44 -0700451 BitBufferWriter buffer(bytes, 2);
452 EXPECT_TRUE(buffer.ConsumeBits(3));
453 EXPECT_TRUE(buffer.WriteBits(0, 1));
454 EXPECT_EQ(0xEFu, bytes[0]);
455 EXPECT_TRUE(buffer.WriteBits(0, 3));
456 EXPECT_EQ(0xE1u, bytes[0]);
457 EXPECT_TRUE(buffer.WriteBits(0, 2));
458 EXPECT_EQ(0xE0u, bytes[0]);
459 EXPECT_EQ(0x7F, bytes[1]);
460}
461
Noah Richardsbbf7c862015-04-21 16:30:13 -0700462} // namespace rtc