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henrike@webrtc.org47be73b2014-05-13 18:00:261/*
2 * Copyright 2004 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
Zeke Chinbe029f62015-07-14 19:55:4411#include "webrtc/base/fileutils.h"
henrike@webrtc.org47be73b2014-05-13 18:00:2612#include "webrtc/base/gunit.h"
Zeke Chinbe029f62015-07-14 19:55:4413#include "webrtc/base/pathutils.h"
henrike@webrtc.org47be73b2014-05-13 18:00:2614#include "webrtc/base/stream.h"
kjellander@webrtc.org60b0bb62014-09-19 13:47:4715#include "webrtc/test/testsupport/gtest_disable.h"
henrike@webrtc.org47be73b2014-05-13 18:00:2616
17namespace rtc {
18
19///////////////////////////////////////////////////////////////////////////////
20// TestStream
21///////////////////////////////////////////////////////////////////////////////
22
23class TestStream : public StreamInterface {
24 public:
25 TestStream() : pos_(0) { }
26
27 virtual StreamState GetState() const { return SS_OPEN; }
28 virtual StreamResult Read(void* buffer, size_t buffer_len,
29 size_t* read, int* error) {
30 unsigned char* uc_buffer = static_cast<unsigned char*>(buffer);
31 for (size_t i = 0; i < buffer_len; ++i) {
32 uc_buffer[i] = static_cast<unsigned char>(pos_++);
33 }
34 if (read)
35 *read = buffer_len;
36 return SR_SUCCESS;
37 }
38 virtual StreamResult Write(const void* data, size_t data_len,
39 size_t* written, int* error) {
40 if (error)
41 *error = -1;
42 return SR_ERROR;
43 }
44 virtual void Close() { }
45 virtual bool SetPosition(size_t position) {
46 pos_ = position;
47 return true;
48 }
49 virtual bool GetPosition(size_t* position) const {
50 if (position) *position = pos_;
51 return true;
52 }
53 virtual bool GetSize(size_t* size) const {
54 return false;
55 }
56 virtual bool GetAvailable(size_t* size) const {
57 return false;
58 }
59
60 private:
61 size_t pos_;
62};
63
64bool VerifyTestBuffer(unsigned char* buffer, size_t len,
65 unsigned char value) {
66 bool passed = true;
67 for (size_t i = 0; i < len; ++i) {
68 if (buffer[i] != value++) {
69 passed = false;
70 break;
71 }
72 }
73 // Ensure that we don't pass again without re-writing
74 memset(buffer, 0, len);
75 return passed;
76}
77
78void SeekTest(StreamInterface* stream, const unsigned char value) {
79 size_t bytes;
80 unsigned char buffer[13] = { 0 };
81 const size_t kBufSize = sizeof(buffer);
82
83 EXPECT_EQ(stream->Read(buffer, kBufSize, &bytes, NULL), SR_SUCCESS);
84 EXPECT_EQ(bytes, kBufSize);
85 EXPECT_TRUE(VerifyTestBuffer(buffer, kBufSize, value));
86 EXPECT_TRUE(stream->GetPosition(&bytes));
87 EXPECT_EQ(13U, bytes);
88
89 EXPECT_TRUE(stream->SetPosition(7));
90
91 EXPECT_EQ(stream->Read(buffer, kBufSize, &bytes, NULL), SR_SUCCESS);
92 EXPECT_EQ(bytes, kBufSize);
93 EXPECT_TRUE(VerifyTestBuffer(buffer, kBufSize, value + 7));
94 EXPECT_TRUE(stream->GetPosition(&bytes));
95 EXPECT_EQ(20U, bytes);
96}
97
henrike@webrtc.org47be73b2014-05-13 18:00:2698TEST(FifoBufferTest, TestAll) {
99 const size_t kSize = 16;
100 const char in[kSize * 2 + 1] = "0123456789ABCDEFGHIJKLMNOPQRSTUV";
101 char out[kSize * 2];
102 void* p;
103 const void* q;
104 size_t bytes;
105 FifoBuffer buf(kSize);
106 StreamInterface* stream = &buf;
107
108 // Test assumptions about base state
109 EXPECT_EQ(SS_OPEN, stream->GetState());
110 EXPECT_EQ(SR_BLOCK, stream->Read(out, kSize, &bytes, NULL));
111 EXPECT_TRUE(NULL != stream->GetReadData(&bytes));
112 EXPECT_EQ((size_t)0, bytes);
113 stream->ConsumeReadData(0);
114 EXPECT_TRUE(NULL != stream->GetWriteBuffer(&bytes));
115 EXPECT_EQ(kSize, bytes);
116 stream->ConsumeWriteBuffer(0);
117
118 // Try a full write
119 EXPECT_EQ(SR_SUCCESS, stream->Write(in, kSize, &bytes, NULL));
120 EXPECT_EQ(kSize, bytes);
121
122 // Try a write that should block
123 EXPECT_EQ(SR_BLOCK, stream->Write(in, kSize, &bytes, NULL));
124
125 // Try a full read
126 EXPECT_EQ(SR_SUCCESS, stream->Read(out, kSize, &bytes, NULL));
127 EXPECT_EQ(kSize, bytes);
128 EXPECT_EQ(0, memcmp(in, out, kSize));
129
130 // Try a read that should block
131 EXPECT_EQ(SR_BLOCK, stream->Read(out, kSize, &bytes, NULL));
132
133 // Try a too-big write
134 EXPECT_EQ(SR_SUCCESS, stream->Write(in, kSize * 2, &bytes, NULL));
135 EXPECT_EQ(bytes, kSize);
136
137 // Try a too-big read
138 EXPECT_EQ(SR_SUCCESS, stream->Read(out, kSize * 2, &bytes, NULL));
139 EXPECT_EQ(kSize, bytes);
140 EXPECT_EQ(0, memcmp(in, out, kSize));
141
142 // Try some small writes and reads
143 EXPECT_EQ(SR_SUCCESS, stream->Write(in, kSize / 2, &bytes, NULL));
144 EXPECT_EQ(kSize / 2, bytes);
145 EXPECT_EQ(SR_SUCCESS, stream->Read(out, kSize / 2, &bytes, NULL));
146 EXPECT_EQ(kSize / 2, bytes);
147 EXPECT_EQ(0, memcmp(in, out, kSize / 2));
148 EXPECT_EQ(SR_SUCCESS, stream->Write(in, kSize / 2, &bytes, NULL));
149 EXPECT_EQ(kSize / 2, bytes);
150 EXPECT_EQ(SR_SUCCESS, stream->Write(in, kSize / 2, &bytes, NULL));
151 EXPECT_EQ(kSize / 2, bytes);
152 EXPECT_EQ(SR_SUCCESS, stream->Read(out, kSize / 2, &bytes, NULL));
153 EXPECT_EQ(kSize / 2, bytes);
154 EXPECT_EQ(0, memcmp(in, out, kSize / 2));
155 EXPECT_EQ(SR_SUCCESS, stream->Read(out, kSize / 2, &bytes, NULL));
156 EXPECT_EQ(kSize / 2, bytes);
157 EXPECT_EQ(0, memcmp(in, out, kSize / 2));
158
159 // Try wraparound reads and writes in the following pattern
160 // WWWWWWWWWWWW.... 0123456789AB....
161 // RRRRRRRRXXXX.... ........89AB....
162 // WWWW....XXXXWWWW 4567....89AB0123
163 // XXXX....RRRRXXXX 4567........0123
164 // XXXXWWWWWWWWXXXX 4567012345670123
165 // RRRRXXXXXXXXRRRR ....01234567....
166 // ....RRRRRRRR.... ................
167 EXPECT_EQ(SR_SUCCESS, stream->Write(in, kSize * 3 / 4, &bytes, NULL));
168 EXPECT_EQ(kSize * 3 / 4, bytes);
169 EXPECT_EQ(SR_SUCCESS, stream->Read(out, kSize / 2, &bytes, NULL));
170 EXPECT_EQ(kSize / 2, bytes);
171 EXPECT_EQ(0, memcmp(in, out, kSize / 2));
172 EXPECT_EQ(SR_SUCCESS, stream->Write(in, kSize / 2, &bytes, NULL));
173 EXPECT_EQ(kSize / 2, bytes);
174 EXPECT_EQ(SR_SUCCESS, stream->Read(out, kSize / 4, &bytes, NULL));
175 EXPECT_EQ(kSize / 4 , bytes);
176 EXPECT_EQ(0, memcmp(in + kSize / 2, out, kSize / 4));
177 EXPECT_EQ(SR_SUCCESS, stream->Write(in, kSize / 2, &bytes, NULL));
178 EXPECT_EQ(kSize / 2, bytes);
179 EXPECT_EQ(SR_SUCCESS, stream->Read(out, kSize / 2, &bytes, NULL));
180 EXPECT_EQ(kSize / 2 , bytes);
181 EXPECT_EQ(0, memcmp(in, out, kSize / 2));
182 EXPECT_EQ(SR_SUCCESS, stream->Read(out, kSize / 2, &bytes, NULL));
183 EXPECT_EQ(kSize / 2 , bytes);
184 EXPECT_EQ(0, memcmp(in, out, kSize / 2));
185
186 // Use GetWriteBuffer to reset the read_position for the next tests
187 stream->GetWriteBuffer(&bytes);
188 stream->ConsumeWriteBuffer(0);
189
190 // Try using GetReadData to do a full read
191 EXPECT_EQ(SR_SUCCESS, stream->Write(in, kSize, &bytes, NULL));
192 q = stream->GetReadData(&bytes);
193 EXPECT_TRUE(NULL != q);
194 EXPECT_EQ(kSize, bytes);
195 EXPECT_EQ(0, memcmp(q, in, kSize));
196 stream->ConsumeReadData(kSize);
197 EXPECT_EQ(SR_BLOCK, stream->Read(out, kSize, &bytes, NULL));
198
199 // Try using GetReadData to do some small reads
200 EXPECT_EQ(SR_SUCCESS, stream->Write(in, kSize, &bytes, NULL));
201 q = stream->GetReadData(&bytes);
202 EXPECT_TRUE(NULL != q);
203 EXPECT_EQ(kSize, bytes);
204 EXPECT_EQ(0, memcmp(q, in, kSize / 2));
205 stream->ConsumeReadData(kSize / 2);
206 q = stream->GetReadData(&bytes);
207 EXPECT_TRUE(NULL != q);
208 EXPECT_EQ(kSize / 2, bytes);
209 EXPECT_EQ(0, memcmp(q, in + kSize / 2, kSize / 2));
210 stream->ConsumeReadData(kSize / 2);
211 EXPECT_EQ(SR_BLOCK, stream->Read(out, kSize, &bytes, NULL));
212
213 // Try using GetReadData in a wraparound case
214 // WWWWWWWWWWWWWWWW 0123456789ABCDEF
215 // RRRRRRRRRRRRXXXX ............CDEF
216 // WWWWWWWW....XXXX 01234567....CDEF
217 // ............RRRR 01234567........
218 // RRRRRRRR........ ................
219 EXPECT_EQ(SR_SUCCESS, stream->Write(in, kSize, &bytes, NULL));
220 EXPECT_EQ(SR_SUCCESS, stream->Read(out, kSize * 3 / 4, &bytes, NULL));
221 EXPECT_EQ(SR_SUCCESS, stream->Write(in, kSize / 2, &bytes, NULL));
222 q = stream->GetReadData(&bytes);
223 EXPECT_TRUE(NULL != q);
224 EXPECT_EQ(kSize / 4, bytes);
225 EXPECT_EQ(0, memcmp(q, in + kSize * 3 / 4, kSize / 4));
226 stream->ConsumeReadData(kSize / 4);
227 q = stream->GetReadData(&bytes);
228 EXPECT_TRUE(NULL != q);
229 EXPECT_EQ(kSize / 2, bytes);
230 EXPECT_EQ(0, memcmp(q, in, kSize / 2));
231 stream->ConsumeReadData(kSize / 2);
232
233 // Use GetWriteBuffer to reset the read_position for the next tests
234 stream->GetWriteBuffer(&bytes);
235 stream->ConsumeWriteBuffer(0);
236
237 // Try using GetWriteBuffer to do a full write
238 p = stream->GetWriteBuffer(&bytes);
239 EXPECT_TRUE(NULL != p);
240 EXPECT_EQ(kSize, bytes);
241 memcpy(p, in, kSize);
242 stream->ConsumeWriteBuffer(kSize);
243 EXPECT_EQ(SR_SUCCESS, stream->Read(out, kSize, &bytes, NULL));
244 EXPECT_EQ(kSize, bytes);
245 EXPECT_EQ(0, memcmp(in, out, kSize));
246
247 // Try using GetWriteBuffer to do some small writes
248 p = stream->GetWriteBuffer(&bytes);
249 EXPECT_TRUE(NULL != p);
250 EXPECT_EQ(kSize, bytes);
251 memcpy(p, in, kSize / 2);
252 stream->ConsumeWriteBuffer(kSize / 2);
253 p = stream->GetWriteBuffer(&bytes);
254 EXPECT_TRUE(NULL != p);
255 EXPECT_EQ(kSize / 2, bytes);
256 memcpy(p, in + kSize / 2, kSize / 2);
257 stream->ConsumeWriteBuffer(kSize / 2);
258 EXPECT_EQ(SR_SUCCESS, stream->Read(out, kSize, &bytes, NULL));
259 EXPECT_EQ(kSize, bytes);
260 EXPECT_EQ(0, memcmp(in, out, kSize));
261
262 // Try using GetWriteBuffer in a wraparound case
263 // WWWWWWWWWWWW.... 0123456789AB....
264 // RRRRRRRRXXXX.... ........89AB....
265 // ........XXXXWWWW ........89AB0123
266 // WWWW....XXXXXXXX 4567....89AB0123
267 // RRRR....RRRRRRRR ................
268 EXPECT_EQ(SR_SUCCESS, stream->Write(in, kSize * 3 / 4, &bytes, NULL));
269 EXPECT_EQ(SR_SUCCESS, stream->Read(out, kSize / 2, &bytes, NULL));
270 p = stream->GetWriteBuffer(&bytes);
271 EXPECT_TRUE(NULL != p);
272 EXPECT_EQ(kSize / 4, bytes);
273 memcpy(p, in, kSize / 4);
274 stream->ConsumeWriteBuffer(kSize / 4);
275 p = stream->GetWriteBuffer(&bytes);
276 EXPECT_TRUE(NULL != p);
277 EXPECT_EQ(kSize / 2, bytes);
278 memcpy(p, in + kSize / 4, kSize / 4);
279 stream->ConsumeWriteBuffer(kSize / 4);
280 EXPECT_EQ(SR_SUCCESS, stream->Read(out, kSize * 3 / 4, &bytes, NULL));
281 EXPECT_EQ(kSize * 3 / 4, bytes);
282 EXPECT_EQ(0, memcmp(in + kSize / 2, out, kSize / 4));
283 EXPECT_EQ(0, memcmp(in, out + kSize / 4, kSize / 4));
284
285 // Check that the stream is now empty
286 EXPECT_EQ(SR_BLOCK, stream->Read(out, kSize, &bytes, NULL));
287
288 // Try growing the buffer
289 EXPECT_EQ(SR_SUCCESS, stream->Write(in, kSize, &bytes, NULL));
290 EXPECT_EQ(kSize, bytes);
291 EXPECT_TRUE(buf.SetCapacity(kSize * 2));
292 EXPECT_EQ(SR_SUCCESS, stream->Write(in + kSize, kSize, &bytes, NULL));
293 EXPECT_EQ(kSize, bytes);
294 EXPECT_EQ(SR_SUCCESS, stream->Read(out, kSize * 2, &bytes, NULL));
295 EXPECT_EQ(kSize * 2, bytes);
296 EXPECT_EQ(0, memcmp(in, out, kSize * 2));
297
298 // Try shrinking the buffer
299 EXPECT_EQ(SR_SUCCESS, stream->Write(in, kSize, &bytes, NULL));
300 EXPECT_EQ(kSize, bytes);
301 EXPECT_TRUE(buf.SetCapacity(kSize));
302 EXPECT_EQ(SR_BLOCK, stream->Write(in, kSize, &bytes, NULL));
303 EXPECT_EQ(SR_SUCCESS, stream->Read(out, kSize, &bytes, NULL));
304 EXPECT_EQ(kSize, bytes);
305 EXPECT_EQ(0, memcmp(in, out, kSize));
306
307 // Write to the stream, close it, read the remaining bytes
308 EXPECT_EQ(SR_SUCCESS, stream->Write(in, kSize / 2, &bytes, NULL));
309 stream->Close();
310 EXPECT_EQ(SS_CLOSED, stream->GetState());
311 EXPECT_EQ(SR_EOS, stream->Write(in, kSize / 2, &bytes, NULL));
312 EXPECT_EQ(SR_SUCCESS, stream->Read(out, kSize / 2, &bytes, NULL));
313 EXPECT_EQ(0, memcmp(in, out, kSize / 2));
314 EXPECT_EQ(SR_EOS, stream->Read(out, kSize / 2, &bytes, NULL));
315}
316
317TEST(FifoBufferTest, FullBufferCheck) {
318 FifoBuffer buff(10);
319 buff.ConsumeWriteBuffer(10);
320
321 size_t free;
322 EXPECT_TRUE(buff.GetWriteBuffer(&free) != NULL);
323 EXPECT_EQ(0U, free);
324}
325
326TEST(FifoBufferTest, WriteOffsetAndReadOffset) {
327 const size_t kSize = 16;
328 const char in[kSize * 2 + 1] = "0123456789ABCDEFGHIJKLMNOPQRSTUV";
329 char out[kSize * 2];
330 FifoBuffer buf(kSize);
331
332 // Write 14 bytes.
333 EXPECT_EQ(SR_SUCCESS, buf.Write(in, 14, NULL, NULL));
334
335 // Make sure data is in |buf|.
336 size_t buffered;
337 EXPECT_TRUE(buf.GetBuffered(&buffered));
338 EXPECT_EQ(14u, buffered);
339
340 // Read 10 bytes.
341 buf.ConsumeReadData(10);
342
343 // There should be now 12 bytes of available space.
344 size_t remaining;
345 EXPECT_TRUE(buf.GetWriteRemaining(&remaining));
346 EXPECT_EQ(12u, remaining);
347
348 // Write at offset 12, this should fail.
349 EXPECT_EQ(SR_BLOCK, buf.WriteOffset(in, 10, 12, NULL));
350
351 // Write 8 bytes at offset 4, this wraps around the buffer.
352 EXPECT_EQ(SR_SUCCESS, buf.WriteOffset(in, 8, 4, NULL));
353
354 // Number of available space remains the same until we call
355 // ConsumeWriteBuffer().
356 EXPECT_TRUE(buf.GetWriteRemaining(&remaining));
357 EXPECT_EQ(12u, remaining);
358 buf.ConsumeWriteBuffer(12);
359
360 // There's 4 bytes bypassed and 4 bytes no read so skip them and verify the
361 // 8 bytes written.
362 size_t read;
363 EXPECT_EQ(SR_SUCCESS, buf.ReadOffset(out, 8, 8, &read));
364 EXPECT_EQ(8u, read);
365 EXPECT_EQ(0, memcmp(out, in, 8));
366
367 // There should still be 16 bytes available for reading.
368 EXPECT_TRUE(buf.GetBuffered(&buffered));
369 EXPECT_EQ(16u, buffered);
370
371 // Read at offset 16, this should fail since we don't have that much data.
372 EXPECT_EQ(SR_BLOCK, buf.ReadOffset(out, 10, 16, NULL));
373}
374
henrike@webrtc.org47be73b2014-05-13 18:00:26375} // namespace rtc