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henrik.lundin@webrtc.orgd94659d2013-01-29 12:09:21 +00001/*
2 * Copyright (c) 2012 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
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020011#include "modules/audio_coding/neteq/dtmf_buffer.h"
henrik.lundin@webrtc.orgd94659d2013-01-29 12:09:21 +000012
13#ifdef WIN32
14#include <winsock2.h> // ntohl()
15#else
16#include <arpa/inet.h> // ntohl()
17#endif
18
19#include <iostream>
20
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020021#include "test/gtest.h"
henrik.lundin@webrtc.orgd94659d2013-01-29 12:09:21 +000022
23// Modify the tests so that they pass with the modifications done to DtmfBuffer
24// for backwards bit-exactness. Once bit-exactness is no longer required, this
25// #define should be removed (and the code that it enables).
26#define LEGACY_BITEXACT
27
28namespace webrtc {
29
30static int sample_rate_hz = 8000;
31
32static uint32_t MakeDtmfPayload(int event, bool end, int volume, int duration) {
33 uint32_t payload = 0;
34// 0 1 2 3
35// 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1
36// +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
37// | event |E|R| volume | duration |
38// +-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+-+
39 payload |= (event & 0x00FF) << 24;
40 payload |= (end ? 0x00800000 : 0x00000000);
41 payload |= (volume & 0x003F) << 16;
42 payload |= (duration & 0xFFFF);
43 payload = ntohl(payload);
44 return payload;
45}
46
47static bool EqualEvents(const DtmfEvent& a,
48 const DtmfEvent& b) {
49 return (a.duration == b.duration
50 && a.end_bit == b.end_bit
51 && a.event_no == b.event_no
52 && a.timestamp == b.timestamp
53 && a.volume == b.volume);
54}
55
56TEST(DtmfBuffer, CreateAndDestroy) {
57 DtmfBuffer* buffer = new DtmfBuffer(sample_rate_hz);
58 delete buffer;
59}
60
61// Test the event parser.
62TEST(DtmfBuffer, ParseEvent) {
63 int event_no = 7;
64 bool end_bit = true;
65 int volume = 17;
66 int duration = 4711;
67 uint32_t timestamp = 0x12345678;
68 uint32_t payload = MakeDtmfPayload(event_no, end_bit, volume, duration);
69 uint8_t* payload_ptr = reinterpret_cast<uint8_t*>(&payload);
70 DtmfEvent event;
71 EXPECT_EQ(DtmfBuffer::kOK,
72 DtmfBuffer::ParseEvent(timestamp, payload_ptr, sizeof(payload),
73 &event));
74 EXPECT_EQ(duration, event.duration);
75 EXPECT_EQ(end_bit, event.end_bit);
76 EXPECT_EQ(event_no, event.event_no);
77 EXPECT_EQ(timestamp, event.timestamp);
78 EXPECT_EQ(volume, event.volume);
79
henrik.lundin@webrtc.orgd94659d2013-01-29 12:09:21 +000080 EXPECT_EQ(DtmfBuffer::kPayloadTooShort,
81 DtmfBuffer::ParseEvent(timestamp, payload_ptr, 3, &event));
82}
83
84TEST(DtmfBuffer, SimpleInsertAndGet) {
85 int event_no = 7;
86 bool end_bit = true;
87 int volume = 17;
88 int duration = 4711;
89 uint32_t timestamp = 0x12345678;
90 DtmfEvent event(timestamp, event_no, volume, duration, end_bit);
91 DtmfBuffer buffer(sample_rate_hz);
92 EXPECT_EQ(DtmfBuffer::kOK, buffer.InsertEvent(event));
93 EXPECT_EQ(1u, buffer.Length());
94 EXPECT_FALSE(buffer.Empty());
95 DtmfEvent out_event;
96 // Too early to get event.
97 EXPECT_FALSE(buffer.GetEvent(timestamp - 10, &out_event));
98 EXPECT_EQ(1u, buffer.Length());
99 EXPECT_FALSE(buffer.Empty());
100 // Get the event at its starting timestamp.
101 EXPECT_TRUE(buffer.GetEvent(timestamp, &out_event));
102 EXPECT_TRUE(EqualEvents(event, out_event));
103 EXPECT_EQ(1u, buffer.Length());
104 EXPECT_FALSE(buffer.Empty());
105 // Get the event some time into the event.
106 EXPECT_TRUE(buffer.GetEvent(timestamp + duration / 2, &out_event));
107 EXPECT_TRUE(EqualEvents(event, out_event));
108 EXPECT_EQ(1u, buffer.Length());
109 EXPECT_FALSE(buffer.Empty());
110 // Give a "current" timestamp after the event has ended.
111#ifdef LEGACY_BITEXACT
112 EXPECT_TRUE(buffer.GetEvent(timestamp + duration + 10, &out_event));
113#endif
114 EXPECT_FALSE(buffer.GetEvent(timestamp + duration + 10, &out_event));
115 EXPECT_EQ(0u, buffer.Length());
116 EXPECT_TRUE(buffer.Empty());
117}
118
119TEST(DtmfBuffer, MergingPackets) {
120 int event_no = 0;
121 bool end_bit = false;
122 int volume = 17;
123 int duration = 80;
124 uint32_t timestamp = 0x12345678;
125 DtmfEvent event(timestamp, event_no, volume, duration, end_bit);
126 DtmfBuffer buffer(sample_rate_hz);
127 EXPECT_EQ(DtmfBuffer::kOK, buffer.InsertEvent(event));
128
129 event.duration += 80;
130 EXPECT_EQ(DtmfBuffer::kOK, buffer.InsertEvent(event));
131
132 event.duration += 80;
133 event.end_bit = true;
134 EXPECT_EQ(DtmfBuffer::kOK, buffer.InsertEvent(event));
135
136 EXPECT_EQ(1u, buffer.Length());
137
138 DtmfEvent out_event;
139 EXPECT_TRUE(buffer.GetEvent(timestamp, &out_event));
140 EXPECT_TRUE(EqualEvents(event, out_event));
141}
142
143// This test case inserts one shorter event completely overlapped by one longer
144// event. The expected outcome is that only the longer event is played.
145TEST(DtmfBuffer, OverlappingEvents) {
146 int event_no = 0;
147 bool end_bit = true;
148 int volume = 1;
149 int duration = 80;
150 uint32_t timestamp = 0x12345678 + 80;
151 DtmfEvent short_event(timestamp, event_no, volume, duration, end_bit);
152 DtmfBuffer buffer(sample_rate_hz);
153 EXPECT_EQ(DtmfBuffer::kOK, buffer.InsertEvent(short_event));
154
155 event_no = 10;
156 end_bit = false;
157 timestamp = 0x12345678;
158 DtmfEvent long_event(timestamp, event_no, volume, duration, end_bit);
159 EXPECT_EQ(DtmfBuffer::kOK, buffer.InsertEvent(long_event));
160
161 long_event.duration += 80;
162 EXPECT_EQ(DtmfBuffer::kOK, buffer.InsertEvent(long_event));
163
164 long_event.duration += 80;
165 long_event.end_bit = true;
166 EXPECT_EQ(DtmfBuffer::kOK, buffer.InsertEvent(long_event));
167
168 EXPECT_EQ(2u, buffer.Length());
169
170 DtmfEvent out_event;
171 // Expect to get the long event.
172 EXPECT_TRUE(buffer.GetEvent(timestamp, &out_event));
173 EXPECT_TRUE(EqualEvents(long_event, out_event));
174 // Expect no more events.
175#ifdef LEGACY_BITEXACT
176 EXPECT_TRUE(buffer.GetEvent(timestamp + long_event.duration + 10,
177 &out_event));
178 EXPECT_TRUE(EqualEvents(long_event, out_event));
179 EXPECT_TRUE(buffer.GetEvent(timestamp + long_event.duration + 10,
180 &out_event));
181 EXPECT_TRUE(EqualEvents(short_event, out_event));
182#else
183 EXPECT_FALSE(buffer.GetEvent(timestamp + long_event.duration + 10,
184 &out_event));
185#endif
186 EXPECT_TRUE(buffer.Empty());
187}
188
189TEST(DtmfBuffer, ExtrapolationTime) {
190 int event_no = 0;
191 bool end_bit = false;
192 int volume = 1;
193 int duration = 80;
194 uint32_t timestamp = 0x12345678;
195 DtmfEvent event1(timestamp, event_no, volume, duration, end_bit);
196 DtmfBuffer buffer(sample_rate_hz);
197 EXPECT_EQ(DtmfBuffer::kOK, buffer.InsertEvent(event1));
198 EXPECT_EQ(1u, buffer.Length());
199
200 DtmfEvent out_event;
201 // Get the event at the start.
202 EXPECT_TRUE(buffer.GetEvent(timestamp, &out_event));
203 EXPECT_TRUE(EqualEvents(event1, out_event));
204 // Also get the event 100 samples after the end of the event (since we're
205 // missing the end bit).
206 uint32_t timestamp_now = timestamp + duration + 100;
207 EXPECT_TRUE(buffer.GetEvent(timestamp_now, &out_event));
208 EXPECT_TRUE(EqualEvents(event1, out_event));
209 // Insert another event starting back-to-back with the previous event.
210 timestamp += duration;
211 event_no = 1;
212 DtmfEvent event2(timestamp, event_no, volume, duration, end_bit);
213 EXPECT_EQ(DtmfBuffer::kOK, buffer.InsertEvent(event2));
214 EXPECT_EQ(2u, buffer.Length());
215 // Now we expect to get the new event when supplying |timestamp_now|.
216 EXPECT_TRUE(buffer.GetEvent(timestamp_now, &out_event));
217 EXPECT_TRUE(EqualEvents(event2, out_event));
218 // Expect the the first event to be erased now.
219 EXPECT_EQ(1u, buffer.Length());
220 // Move |timestamp_now| to more than 560 samples after the end of the second
221 // event. Expect that event to be erased.
222 timestamp_now = timestamp + duration + 600;
223#ifdef LEGACY_BITEXACT
224 EXPECT_TRUE(buffer.GetEvent(timestamp_now, &out_event));
225#endif
226 EXPECT_FALSE(buffer.GetEvent(timestamp_now, &out_event));
227 EXPECT_TRUE(buffer.Empty());
228}
229
230TEST(DtmfBuffer, TimestampWraparound) {
231 int event_no = 0;
232 bool end_bit = true;
233 int volume = 1;
234 int duration = 80;
235 uint32_t timestamp1 = 0xFFFFFFFF - duration;
236 DtmfEvent event1(timestamp1, event_no, volume, duration, end_bit);
237 uint32_t timestamp2 = 0;
238 DtmfEvent event2(timestamp2, event_no, volume, duration, end_bit);
239 DtmfBuffer buffer(sample_rate_hz);
240 EXPECT_EQ(DtmfBuffer::kOK, buffer.InsertEvent(event1));
241 EXPECT_EQ(DtmfBuffer::kOK, buffer.InsertEvent(event2));
242 EXPECT_EQ(2u, buffer.Length());
243 DtmfEvent out_event;
244 EXPECT_TRUE(buffer.GetEvent(timestamp1, &out_event));
245 EXPECT_TRUE(EqualEvents(event1, out_event));
246#ifdef LEGACY_BITEXACT
247 EXPECT_EQ(1u, buffer.Length());
248#else
249 EXPECT_EQ(2u, buffer.Length());
250#endif
251
252 buffer.Flush();
253 // Reverse the insert order. Expect same results.
254 EXPECT_EQ(DtmfBuffer::kOK, buffer.InsertEvent(event2));
255 EXPECT_EQ(DtmfBuffer::kOK, buffer.InsertEvent(event1));
256 EXPECT_EQ(2u, buffer.Length());
257 EXPECT_TRUE(buffer.GetEvent(timestamp1, &out_event));
258 EXPECT_TRUE(EqualEvents(event1, out_event));
259#ifdef LEGACY_BITEXACT
260 EXPECT_EQ(1u, buffer.Length());
261#else
262 EXPECT_EQ(2u, buffer.Length());
263#endif
264}
265
266TEST(DtmfBuffer, InvalidEvents) {
267 int event_no = 0;
268 bool end_bit = true;
269 int volume = 1;
270 int duration = 80;
271 uint32_t timestamp = 0x12345678;
272 DtmfEvent event(timestamp, event_no, volume, duration, end_bit);
273 DtmfBuffer buffer(sample_rate_hz);
274
275 // Invalid event number.
276 event.event_no = -1;
277 EXPECT_EQ(DtmfBuffer::kInvalidEventParameters, buffer.InsertEvent(event));
278 event.event_no = 16;
279 EXPECT_EQ(DtmfBuffer::kInvalidEventParameters, buffer.InsertEvent(event));
280 event.event_no = 0; // Valid value;
281
282 // Invalid volume.
283 event.volume = -1;
284 EXPECT_EQ(DtmfBuffer::kInvalidEventParameters, buffer.InsertEvent(event));
solenberg99df6c02016-10-11 04:35:34 -0700285 event.volume = 64;
henrik.lundin@webrtc.orgd94659d2013-01-29 12:09:21 +0000286 EXPECT_EQ(DtmfBuffer::kInvalidEventParameters, buffer.InsertEvent(event));
287 event.volume = 0; // Valid value;
288
289 // Invalid duration.
290 event.duration = -1;
291 EXPECT_EQ(DtmfBuffer::kInvalidEventParameters, buffer.InsertEvent(event));
292 event.duration = 0;
293 EXPECT_EQ(DtmfBuffer::kInvalidEventParameters, buffer.InsertEvent(event));
294 event.duration = 0xFFFF + 1;
295 EXPECT_EQ(DtmfBuffer::kInvalidEventParameters, buffer.InsertEvent(event));
296 event.duration = 1; // Valid value;
297
298 // Finish with a valid event, just to verify that all is ok.
299 EXPECT_EQ(DtmfBuffer::kOK, buffer.InsertEvent(event));
300}
301} // namespace webrtc