blob: 2a5b826b04f64c71d95971a14138814a4dca0a00 [file] [log] [blame]
Jakub Pawlowski13b4d312019-11-05 12:27:29 +01001/*
2 * Copyright (C) 2019 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17#define LOG_TAG "bluetooth_hidl_hal_test"
18#include <android-base/logging.h>
19
20#include <android/hardware/bluetooth/1.0/types.h>
21#include <android/hardware/bluetooth/1.1/IBluetoothHci.h>
22#include <android/hardware/bluetooth/1.1/IBluetoothHciCallbacks.h>
Jakub Pawlowski13b4d312019-11-05 12:27:29 +010023#include <utils/Log.h>
24
25#include <VtsHalHidlTargetCallbackBase.h>
26#include <gtest/gtest.h>
27#include <hidl/GtestPrinter.h>
28#include <hidl/ServiceManagement.h>
29
30#include <chrono>
31#include <queue>
32#include <thread>
33
34using ::android::sp;
35using ::android::hardware::hidl_death_recipient;
36using ::android::hardware::hidl_vec;
37using ::android::hardware::Return;
38using ::android::hardware::Void;
39using ::android::hardware::bluetooth::V1_0::Status;
40using ::android::hardware::bluetooth::V1_1::IBluetoothHci;
41using ::android::hardware::bluetooth::V1_1::IBluetoothHciCallbacks;
42
43#define HCI_MINIMUM_HCI_VERSION 5 // Bluetooth Core Specification 3.0 + HS
44#define HCI_MINIMUM_LMP_VERSION 5 // Bluetooth Core Specification 3.0 + HS
45#define NUM_HCI_COMMANDS_BANDWIDTH 1000
46#define NUM_SCO_PACKETS_BANDWIDTH 1000
47#define NUM_ACL_PACKETS_BANDWIDTH 1000
48#define WAIT_FOR_INIT_TIMEOUT std::chrono::milliseconds(2000)
49#define WAIT_FOR_HCI_EVENT_TIMEOUT std::chrono::milliseconds(2000)
50#define WAIT_FOR_SCO_DATA_TIMEOUT std::chrono::milliseconds(1000)
51#define WAIT_FOR_ACL_DATA_TIMEOUT std::chrono::milliseconds(1000)
52#define INTERFACE_CLOSE_DELAY_MS std::chrono::milliseconds(200)
53
54#define COMMAND_HCI_SHOULD_BE_UNKNOWN \
55 { 0xff, 0x3B, 0x08, 0x00, 0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07 }
56#define COMMAND_HCI_READ_LOCAL_VERSION_INFORMATION \
57 { 0x01, 0x10, 0x00 }
58#define COMMAND_HCI_READ_BUFFER_SIZE \
59 { 0x05, 0x10, 0x00 }
60#define COMMAND_HCI_WRITE_LOOPBACK_MODE_LOCAL \
61 { 0x02, 0x18, 0x01, 0x01 }
62#define COMMAND_HCI_RESET \
63 { 0x03, 0x0c, 0x00 }
64#define COMMAND_HCI_WRITE_LOCAL_NAME \
65 { 0x13, 0x0c, 0xf8 }
66#define HCI_STATUS_SUCCESS 0x00
67#define HCI_STATUS_UNKNOWN_HCI_COMMAND 0x01
68
69#define EVENT_CONNECTION_COMPLETE 0x03
70#define EVENT_COMMAND_COMPLETE 0x0e
71#define EVENT_COMMAND_STATUS 0x0f
72#define EVENT_NUMBER_OF_COMPLETED_PACKETS 0x13
73#define EVENT_LOOPBACK_COMMAND 0x19
74
75#define EVENT_CODE_BYTE 0
76#define EVENT_LENGTH_BYTE 1
77#define EVENT_FIRST_PAYLOAD_BYTE 2
78#define EVENT_COMMAND_STATUS_STATUS_BYTE 2
79#define EVENT_COMMAND_STATUS_ALLOWED_PACKETS_BYTE 3
80#define EVENT_COMMAND_STATUS_OPCODE_LSBYTE 4 // Bytes 4 and 5
81#define EVENT_COMMAND_COMPLETE_ALLOWED_PACKETS_BYTE 2
82#define EVENT_COMMAND_COMPLETE_OPCODE_LSBYTE 3 // Bytes 3 and 4
83#define EVENT_COMMAND_COMPLETE_STATUS_BYTE 5
84#define EVENT_COMMAND_COMPLETE_FIRST_PARAM_BYTE 6
85#define EVENT_LOCAL_HCI_VERSION_BYTE EVENT_COMMAND_COMPLETE_FIRST_PARAM_BYTE
86#define EVENT_LOCAL_LMP_VERSION_BYTE EVENT_LOCAL_HCI_VERSION_BYTE + 3
87
88#define EVENT_CONNECTION_COMPLETE_PARAM_LENGTH 11
89#define EVENT_CONNECTION_COMPLETE_TYPE 11
90#define EVENT_CONNECTION_COMPLETE_TYPE_SCO 0
91#define EVENT_CONNECTION_COMPLETE_TYPE_ACL 1
92#define EVENT_CONNECTION_COMPLETE_HANDLE_LSBYTE 3
93#define EVENT_COMMAND_STATUS_LENGTH 4
94
95#define EVENT_NUMBER_OF_COMPLETED_PACKETS_NUM_HANDLES 2
96
97#define ACL_BROADCAST_FLAG_OFFSET 6
98#define ACL_BROADCAST_FLAG_POINT_TO_POINT 0x0
99#define ACL_BROADCAST_POINT_TO_POINT \
100 (ACL_BROADCAST_FLAG_POINT_TO_POINT << ACL_BROADCAST_FLAG_OFFSET)
101
102#define ACL_PACKET_BOUNDARY_FLAG_OFFSET 4
103#define ACL_PACKET_BOUNDARY_FLAG_FIRST_AUTO_FLUSHABLE 0x2
104#define ACL_PACKET_BOUNDARY_FIRST_AUTO_FLUSHABLE \
105 (ACL_PACKET_BOUNDARY_FLAG_FIRST_AUTO_FLUSHABLE \
106 << ACL_PACKET_BOUNDARY_FLAG_OFFSET)
107
108// To be removed in VTS release builds
109#define ACL_HANDLE_QCA_DEBUG_MESSAGE 0xedc
110
111constexpr char kCallbackNameAclEventReceived[] = "aclDataReceived";
112constexpr char kCallbackNameHciEventReceived[] = "hciEventReceived";
113constexpr char kCallbackNameInitializationComplete[] = "initializationComplete";
114constexpr char kCallbackNameScoEventReceived[] = "scoDataReceived";
115constexpr char kCallbackNameIsoEventReceived[] = "isoDataReceived";
116
117class ThroughputLogger {
118 public:
119 ThroughputLogger(std::string task)
120 : task_(task), start_time_(std::chrono::steady_clock::now()) {}
121
122 ~ThroughputLogger() {
123 if (total_bytes_ == 0) return;
124 std::chrono::duration<double> duration =
125 std::chrono::steady_clock::now() - start_time_;
126 double s = duration.count();
127 if (s == 0) return;
128 double rate_kb = (static_cast<double>(total_bytes_) / s) / 1024;
129 ALOGD("%s %.1f KB/s (%zu bytes in %.3fs)", task_.c_str(), rate_kb,
130 total_bytes_, s);
131 }
132
133 void setTotalBytes(size_t total_bytes) { total_bytes_ = total_bytes; }
134
135 private:
136 size_t total_bytes_;
137 std::string task_;
138 std::chrono::steady_clock::time_point start_time_;
139};
140
141// The main test class for Bluetooth HIDL HAL.
142class BluetoothHidlTest : public ::testing::TestWithParam<std::string> {
143 public:
144 virtual void SetUp() override {
145 // currently test passthrough mode only
146 bluetooth = IBluetoothHci::getService(GetParam());
147 ASSERT_NE(bluetooth, nullptr);
148 ALOGI("%s: getService() for bluetooth is %s", __func__,
149 bluetooth->isRemote() ? "remote" : "local");
150
151 bluetooth_hci_death_recipient = new BluetoothHciDeathRecipient();
152 ASSERT_NE(bluetooth_hci_death_recipient, nullptr);
153 ASSERT_TRUE(
154 bluetooth->linkToDeath(bluetooth_hci_death_recipient, 0).isOk());
155
156 bluetooth_cb = new BluetoothHciCallbacks(*this);
157 ASSERT_NE(bluetooth_cb, nullptr);
158
159 max_acl_data_packet_length = 0;
160 max_sco_data_packet_length = 0;
161 max_acl_data_packets = 0;
162 max_sco_data_packets = 0;
163
164 initialized = false;
165 event_cb_count = 0;
166 acl_cb_count = 0;
167 sco_cb_count = 0;
168
169 ASSERT_FALSE(initialized);
170 // Should not be checked in production code
171 ASSERT_TRUE(bluetooth->initialize(bluetooth_cb).isOk());
172
173 bluetooth_cb->SetWaitTimeout(kCallbackNameInitializationComplete,
174 WAIT_FOR_INIT_TIMEOUT);
175 bluetooth_cb->SetWaitTimeout(kCallbackNameHciEventReceived,
176 WAIT_FOR_HCI_EVENT_TIMEOUT);
177 bluetooth_cb->SetWaitTimeout(kCallbackNameAclEventReceived,
178 WAIT_FOR_ACL_DATA_TIMEOUT);
179 bluetooth_cb->SetWaitTimeout(kCallbackNameScoEventReceived,
180 WAIT_FOR_SCO_DATA_TIMEOUT);
181
182 EXPECT_TRUE(
183 bluetooth_cb->WaitForCallback(kCallbackNameInitializationComplete)
184 .no_timeout);
185
186 ASSERT_TRUE(initialized);
187 }
188
189 virtual void TearDown() override {
190 ALOGI("TearDown");
191 // Should not be checked in production code
192 ASSERT_TRUE(bluetooth->close().isOk());
193 std::this_thread::sleep_for(INTERFACE_CLOSE_DELAY_MS);
194 handle_no_ops();
195 EXPECT_EQ(static_cast<size_t>(0), event_queue.size());
196 EXPECT_EQ(static_cast<size_t>(0), sco_queue.size());
197 EXPECT_EQ(static_cast<size_t>(0), acl_queue.size());
198 EXPECT_EQ(static_cast<size_t>(0), iso_queue.size());
199 }
200
201 void setBufferSizes();
202
203 // Functions called from within tests in loopback mode
204 void sendAndCheckHCI(int num_packets);
205 void sendAndCheckSCO(int num_packets, size_t size, uint16_t handle);
206 void sendAndCheckACL(int num_packets, size_t size, uint16_t handle);
207
208 // Helper functions to try to get a handle on verbosity
209 void enterLoopbackMode(std::vector<uint16_t>* sco_handles,
210 std::vector<uint16_t>* acl_handles);
211 void handle_no_ops();
212 void wait_for_event(bool timeout_is_error);
213 void wait_for_command_complete_event(hidl_vec<uint8_t> cmd);
214 int wait_for_completed_packets_event(uint16_t handle);
215
216 class BluetoothHciDeathRecipient : public hidl_death_recipient {
217 public:
218 void serviceDied(
219 uint64_t /*cookie*/,
220 const android::wp<::android::hidl::base::V1_0::IBase>& /*who*/)
221 override {
222 FAIL();
223 }
224 };
225
226 // A simple test implementation of BluetoothHciCallbacks.
227 class BluetoothHciCallbacks
228 : public ::testing::VtsHalHidlTargetCallbackBase<BluetoothHidlTest>,
229 public IBluetoothHciCallbacks {
230 BluetoothHidlTest& parent_;
231
232 public:
233 BluetoothHciCallbacks(BluetoothHidlTest& parent) : parent_(parent){};
234
235 virtual ~BluetoothHciCallbacks() = default;
236
237 Return<void> initializationComplete(Status status) override {
238 parent_.initialized = (status == Status::SUCCESS);
239 NotifyFromCallback(kCallbackNameInitializationComplete);
240 ALOGV("%s (status = %d)", __func__, static_cast<int>(status));
241 return Void();
242 };
243
244 Return<void> hciEventReceived(
245 const ::android::hardware::hidl_vec<uint8_t>& event) override {
246 parent_.event_cb_count++;
247 parent_.event_queue.push(event);
248 NotifyFromCallback(kCallbackNameHciEventReceived);
249 ALOGV("Event received (length = %d)", static_cast<int>(event.size()));
250 return Void();
251 };
252
253 Return<void> aclDataReceived(
254 const ::android::hardware::hidl_vec<uint8_t>& data) override {
255 parent_.acl_cb_count++;
256 parent_.acl_queue.push(data);
257 NotifyFromCallback(kCallbackNameAclEventReceived);
258 return Void();
259 };
260
261 Return<void> scoDataReceived(
262 const ::android::hardware::hidl_vec<uint8_t>& data) override {
263 parent_.sco_cb_count++;
264 parent_.sco_queue.push(data);
265 NotifyFromCallback(kCallbackNameScoEventReceived);
266 return Void();
267 };
268
269 Return<void> isoDataReceived(
270 const ::android::hardware::hidl_vec<uint8_t>& data) override {
271 parent_.iso_cb_count++;
272 parent_.iso_queue.push(data);
273 NotifyFromCallback(kCallbackNameIsoEventReceived);
274 return Void();
275 };
276 };
277
278 sp<IBluetoothHci> bluetooth;
279 sp<BluetoothHciCallbacks> bluetooth_cb;
280 sp<BluetoothHciDeathRecipient> bluetooth_hci_death_recipient;
281 std::queue<hidl_vec<uint8_t>> event_queue;
282 std::queue<hidl_vec<uint8_t>> acl_queue;
283 std::queue<hidl_vec<uint8_t>> sco_queue;
284 std::queue<hidl_vec<uint8_t>> iso_queue;
285
286 bool initialized;
287
288 int event_cb_count;
289 int sco_cb_count;
290 int acl_cb_count;
291 int iso_cb_count;
292
293 int max_acl_data_packet_length;
294 int max_sco_data_packet_length;
295 int max_acl_data_packets;
296 int max_sco_data_packets;
297};
298
299// Discard NO-OPs from the event queue.
300void BluetoothHidlTest::handle_no_ops() {
301 while (event_queue.size() > 0) {
302 hidl_vec<uint8_t> event = event_queue.front();
303 EXPECT_GE(event.size(),
304 static_cast<size_t>(EVENT_COMMAND_COMPLETE_STATUS_BYTE));
305 bool event_is_no_op =
306 (event[EVENT_CODE_BYTE] == EVENT_COMMAND_COMPLETE) &&
307 (event[EVENT_COMMAND_COMPLETE_OPCODE_LSBYTE] == 0x00) &&
308 (event[EVENT_COMMAND_COMPLETE_OPCODE_LSBYTE + 1] == 0x00);
309 event_is_no_op |= (event[EVENT_CODE_BYTE] == EVENT_COMMAND_STATUS) &&
310 (event[EVENT_COMMAND_STATUS_OPCODE_LSBYTE] == 0x00) &&
311 (event[EVENT_COMMAND_STATUS_OPCODE_LSBYTE + 1] == 0x00);
312 if (event_is_no_op) {
313 event_queue.pop();
314 } else {
315 break;
316 }
317 }
318 // To be removed in VTS release builds
319 while (acl_queue.size() > 0) {
320 hidl_vec<uint8_t> acl_packet = acl_queue.front();
321 uint16_t connection_handle = acl_packet[1] & 0xF;
322 connection_handle <<= 8;
323 connection_handle |= acl_packet[0];
324 bool packet_is_no_op = connection_handle == ACL_HANDLE_QCA_DEBUG_MESSAGE;
325 if (packet_is_no_op) {
326 acl_queue.pop();
327 } else {
328 break;
329 }
330 }
331}
332
333// Receive an event, discarding NO-OPs.
334void BluetoothHidlTest::wait_for_event(bool timeout_is_error = true) {
335 hidl_vec<uint8_t> event;
336 do {
337 bool no_timeout =
338 bluetooth_cb->WaitForCallback(kCallbackNameHciEventReceived).no_timeout;
339 EXPECT_TRUE(no_timeout || !timeout_is_error);
340 if (no_timeout && timeout_is_error) {
341 EXPECT_LT(static_cast<size_t>(0), event_queue.size());
342 }
343 if (event_queue.size() == 0) {
344 // WaitForCallback timed out.
345 return;
346 }
347 handle_no_ops();
348 } while (event_queue.size() == 0);
349}
350
351// Wait until a COMMAND_COMPLETE is received.
352void BluetoothHidlTest::wait_for_command_complete_event(hidl_vec<uint8_t> cmd) {
353 wait_for_event();
354 hidl_vec<uint8_t> event = event_queue.front();
355 event_queue.pop();
356
357 EXPECT_GT(event.size(),
358 static_cast<size_t>(EVENT_COMMAND_COMPLETE_STATUS_BYTE));
359 EXPECT_EQ(EVENT_COMMAND_COMPLETE, event[EVENT_CODE_BYTE]);
360 EXPECT_EQ(cmd[0], event[EVENT_COMMAND_COMPLETE_OPCODE_LSBYTE]);
361 EXPECT_EQ(cmd[1], event[EVENT_COMMAND_COMPLETE_OPCODE_LSBYTE + 1]);
362 EXPECT_EQ(HCI_STATUS_SUCCESS, event[EVENT_COMMAND_COMPLETE_STATUS_BYTE]);
363}
364
365// Send the command to read the controller's buffer sizes.
366void BluetoothHidlTest::setBufferSizes() {
367 hidl_vec<uint8_t> cmd = COMMAND_HCI_READ_BUFFER_SIZE;
368 bluetooth->sendHciCommand(cmd);
369
370 wait_for_event();
371 if (event_queue.size() == 0) return;
372
373 hidl_vec<uint8_t> event = event_queue.front();
374 event_queue.pop();
375
376 EXPECT_EQ(EVENT_COMMAND_COMPLETE, event[EVENT_CODE_BYTE]);
377 EXPECT_EQ(cmd[0], event[EVENT_COMMAND_COMPLETE_OPCODE_LSBYTE]);
378 EXPECT_EQ(cmd[1], event[EVENT_COMMAND_COMPLETE_OPCODE_LSBYTE + 1]);
379 EXPECT_EQ(HCI_STATUS_SUCCESS, event[EVENT_COMMAND_COMPLETE_STATUS_BYTE]);
380
381 max_acl_data_packet_length =
382 event[EVENT_COMMAND_COMPLETE_STATUS_BYTE + 1] +
383 (event[EVENT_COMMAND_COMPLETE_STATUS_BYTE + 2] << 8);
384 max_sco_data_packet_length = event[EVENT_COMMAND_COMPLETE_STATUS_BYTE + 3];
385 max_acl_data_packets = event[EVENT_COMMAND_COMPLETE_STATUS_BYTE + 4] +
386 (event[EVENT_COMMAND_COMPLETE_STATUS_BYTE + 5] << 8);
387 max_sco_data_packets = event[EVENT_COMMAND_COMPLETE_STATUS_BYTE + 6] +
388 (event[EVENT_COMMAND_COMPLETE_STATUS_BYTE + 7] << 8);
389
390 ALOGD("%s: ACL max %d num %d SCO max %d num %d", __func__,
391 static_cast<int>(max_acl_data_packet_length),
392 static_cast<int>(max_acl_data_packets),
393 static_cast<int>(max_sco_data_packet_length),
394 static_cast<int>(max_sco_data_packets));
395}
396
397// Send an HCI command (in Loopback mode) and check the response.
398void BluetoothHidlTest::sendAndCheckHCI(int num_packets) {
399 ThroughputLogger logger = {__func__};
400 int command_size = 0;
401 for (int n = 0; n < num_packets; n++) {
402 // Send an HCI packet
403 std::vector<uint8_t> write_name = COMMAND_HCI_WRITE_LOCAL_NAME;
404 // With a name
405 char new_name[] = "John Jacob Jingleheimer Schmidt ___________________0";
406 size_t new_name_length = strlen(new_name);
407 for (size_t i = 0; i < new_name_length; i++)
408 write_name.push_back(static_cast<uint8_t>(new_name[i]));
409 // And the packet number
410 size_t i = new_name_length - 1;
411 for (int digits = n; digits > 0; digits = digits / 10, i--)
412 write_name[i] = static_cast<uint8_t>('0' + digits % 10);
413 // And padding
414 for (size_t i = 0; i < 248 - new_name_length; i++)
415 write_name.push_back(static_cast<uint8_t>(0));
416
417 hidl_vec<uint8_t> cmd = write_name;
418 bluetooth->sendHciCommand(cmd);
419
420 // Check the loopback of the HCI packet
421 wait_for_event();
422 if (event_queue.size() == 0) return;
423
424 hidl_vec<uint8_t> event = event_queue.front();
425 event_queue.pop();
426 size_t compare_length =
427 (cmd.size() > static_cast<size_t>(0xff) ? static_cast<size_t>(0xff)
428 : cmd.size());
429 EXPECT_GT(event.size(), compare_length + EVENT_FIRST_PAYLOAD_BYTE - 1);
430
431 EXPECT_EQ(EVENT_LOOPBACK_COMMAND, event[EVENT_CODE_BYTE]);
432 EXPECT_EQ(compare_length, event[EVENT_LENGTH_BYTE]);
433
434 // Don't compare past the end of the event.
435 if (compare_length + EVENT_FIRST_PAYLOAD_BYTE > event.size()) {
436 compare_length = event.size() - EVENT_FIRST_PAYLOAD_BYTE;
437 ALOGE("Only comparing %d bytes", static_cast<int>(compare_length));
438 }
439
440 if (n == num_packets - 1) {
441 command_size = cmd.size();
442 }
443
444 for (size_t i = 0; i < compare_length; i++)
445 EXPECT_EQ(cmd[i], event[EVENT_FIRST_PAYLOAD_BYTE + i]);
446 }
447 logger.setTotalBytes(command_size * num_packets * 2);
448}
449
450// Send a SCO data packet (in Loopback mode) and check the response.
451void BluetoothHidlTest::sendAndCheckSCO(int num_packets, size_t size,
452 uint16_t handle) {
453 ThroughputLogger logger = {__func__};
454 for (int n = 0; n < num_packets; n++) {
455 // Send a SCO packet
456 hidl_vec<uint8_t> sco_packet;
457 std::vector<uint8_t> sco_vector;
458 sco_vector.push_back(static_cast<uint8_t>(handle & 0xff));
459 sco_vector.push_back(static_cast<uint8_t>((handle & 0x0f00) >> 8));
460 sco_vector.push_back(static_cast<uint8_t>(size & 0xff));
461 sco_vector.push_back(static_cast<uint8_t>((size & 0xff00) >> 8));
462 for (size_t i = 0; i < size; i++) {
463 sco_vector.push_back(static_cast<uint8_t>(i + n));
464 }
465 sco_packet = sco_vector;
466 bluetooth->sendScoData(sco_vector);
467
468 // Check the loopback of the SCO packet
469 EXPECT_TRUE(bluetooth_cb->WaitForCallback(kCallbackNameScoEventReceived)
470 .no_timeout);
471 hidl_vec<uint8_t> sco_loopback = sco_queue.front();
472 sco_queue.pop();
473
474 EXPECT_EQ(sco_packet.size(), sco_loopback.size());
475 size_t successful_bytes = 0;
476
477 for (size_t i = 0; i < sco_packet.size(); i++) {
478 if (sco_packet[i] == sco_loopback[i]) {
479 successful_bytes = i;
480 } else {
481 ALOGE("Miscompare at %d (expected %x, got %x)", static_cast<int>(i),
482 sco_packet[i], sco_loopback[i]);
483 ALOGE("At %d (expected %x, got %x)", static_cast<int>(i + 1),
484 sco_packet[i + 1], sco_loopback[i + 1]);
485 break;
486 }
487 }
488 EXPECT_EQ(sco_packet.size(), successful_bytes + 1);
489 }
490 logger.setTotalBytes(num_packets * size * 2);
491}
492
493// Send an ACL data packet (in Loopback mode) and check the response.
494void BluetoothHidlTest::sendAndCheckACL(int num_packets, size_t size,
495 uint16_t handle) {
496 ThroughputLogger logger = {__func__};
497 for (int n = 0; n < num_packets; n++) {
498 // Send an ACL packet
499 hidl_vec<uint8_t> acl_packet;
500 std::vector<uint8_t> acl_vector;
501 acl_vector.push_back(static_cast<uint8_t>(handle & 0xff));
502 acl_vector.push_back(static_cast<uint8_t>((handle & 0x0f00) >> 8) |
503 ACL_BROADCAST_POINT_TO_POINT |
504 ACL_PACKET_BOUNDARY_FIRST_AUTO_FLUSHABLE);
505 acl_vector.push_back(static_cast<uint8_t>(size & 0xff));
506 acl_vector.push_back(static_cast<uint8_t>((size & 0xff00) >> 8));
507 for (size_t i = 0; i < size; i++) {
508 acl_vector.push_back(static_cast<uint8_t>(i + n));
509 }
510 acl_packet = acl_vector;
511 bluetooth->sendAclData(acl_vector);
512
513 // Check the loopback of the ACL packet
514 EXPECT_TRUE(bluetooth_cb->WaitForCallback(kCallbackNameAclEventReceived)
515 .no_timeout);
516 hidl_vec<uint8_t> acl_loopback = acl_queue.front();
517 acl_queue.pop();
518
519 EXPECT_EQ(acl_packet.size(), acl_loopback.size());
520 size_t successful_bytes = 0;
521
522 for (size_t i = 0; i < acl_packet.size(); i++) {
523 if (acl_packet[i] == acl_loopback[i]) {
524 successful_bytes = i;
525 } else {
526 ALOGE("Miscompare at %d (expected %x, got %x)", static_cast<int>(i),
527 acl_packet[i], acl_loopback[i]);
528 ALOGE("At %d (expected %x, got %x)", static_cast<int>(i + 1),
529 acl_packet[i + 1], acl_loopback[i + 1]);
530 break;
531 }
532 }
533 EXPECT_EQ(acl_packet.size(), successful_bytes + 1);
534 }
535 logger.setTotalBytes(num_packets * size * 2);
536}
537
538// Return the number of completed packets reported by the controller.
539int BluetoothHidlTest::wait_for_completed_packets_event(uint16_t handle) {
540 int packets_processed = 0;
Myles Watsona794f832023-03-02 13:45:07 -0800541 while (true) {
542 // There should be at least one event.
543 wait_for_event(packets_processed == 0);
544 if (event_queue.empty()) {
545 if (packets_processed == 0) {
546 ALOGW("%s: WaitForCallback timed out.", __func__);
547 }
548 return packets_processed;
549 }
Jakub Pawlowski13b4d312019-11-05 12:27:29 +0100550 hidl_vec<uint8_t> event = event_queue.front();
551 event_queue.pop();
552
553 EXPECT_EQ(EVENT_NUMBER_OF_COMPLETED_PACKETS, event[EVENT_CODE_BYTE]);
554 EXPECT_EQ(1, event[EVENT_NUMBER_OF_COMPLETED_PACKETS_NUM_HANDLES]);
555
556 uint16_t event_handle = event[3] + (event[4] << 8);
557 EXPECT_EQ(handle, event_handle);
558
559 packets_processed += event[5] + (event[6] << 8);
560 }
561 return packets_processed;
562}
563
564// Send local loopback command and initialize SCO and ACL handles.
565void BluetoothHidlTest::enterLoopbackMode(std::vector<uint16_t>* sco_handles,
566 std::vector<uint16_t>* acl_handles) {
567 hidl_vec<uint8_t> cmd = COMMAND_HCI_WRITE_LOOPBACK_MODE_LOCAL;
568 bluetooth->sendHciCommand(cmd);
569
570 // Receive connection complete events with data channels
571 int connection_event_count = 0;
572 bool command_complete_received = false;
573 while (true) {
574 wait_for_event(false);
575 if (event_queue.size() == 0) {
576 // Fail if there was no event received or no connections completed.
577 EXPECT_TRUE(command_complete_received);
578 EXPECT_LT(0, connection_event_count);
579 return;
580 }
581 hidl_vec<uint8_t> event = event_queue.front();
582 event_queue.pop();
583 EXPECT_GT(event.size(),
584 static_cast<size_t>(EVENT_COMMAND_COMPLETE_STATUS_BYTE));
585 if (event[EVENT_CODE_BYTE] == EVENT_CONNECTION_COMPLETE) {
586 EXPECT_GT(event.size(),
587 static_cast<size_t>(EVENT_CONNECTION_COMPLETE_TYPE));
588 EXPECT_EQ(event[EVENT_LENGTH_BYTE],
589 EVENT_CONNECTION_COMPLETE_PARAM_LENGTH);
590 uint8_t connection_type = event[EVENT_CONNECTION_COMPLETE_TYPE];
591
592 EXPECT_TRUE(connection_type == EVENT_CONNECTION_COMPLETE_TYPE_SCO ||
593 connection_type == EVENT_CONNECTION_COMPLETE_TYPE_ACL);
594
595 // Save handles
596 uint16_t handle = event[EVENT_CONNECTION_COMPLETE_HANDLE_LSBYTE] |
597 event[EVENT_CONNECTION_COMPLETE_HANDLE_LSBYTE + 1] << 8;
598 if (connection_type == EVENT_CONNECTION_COMPLETE_TYPE_SCO)
599 sco_handles->push_back(handle);
600 else
601 acl_handles->push_back(handle);
602
603 ALOGD("Connect complete type = %d handle = %d",
604 event[EVENT_CONNECTION_COMPLETE_TYPE], handle);
605 connection_event_count++;
606 } else {
607 EXPECT_EQ(EVENT_COMMAND_COMPLETE, event[EVENT_CODE_BYTE]);
608 EXPECT_EQ(cmd[0], event[EVENT_COMMAND_COMPLETE_OPCODE_LSBYTE]);
609 EXPECT_EQ(cmd[1], event[EVENT_COMMAND_COMPLETE_OPCODE_LSBYTE + 1]);
610 EXPECT_EQ(HCI_STATUS_SUCCESS, event[EVENT_COMMAND_COMPLETE_STATUS_BYTE]);
611 command_complete_received = true;
612 }
613 }
614}
615
616// Empty test: Initialize()/Close() are called in SetUp()/TearDown().
617TEST_P(BluetoothHidlTest, InitializeAndClose) {}
618
619// Send an HCI Reset with sendHciCommand and wait for a command complete event.
620TEST_P(BluetoothHidlTest, HciReset) {
621 hidl_vec<uint8_t> cmd = COMMAND_HCI_RESET;
622 bluetooth->sendHciCommand(cmd);
623
624 wait_for_command_complete_event(cmd);
625}
626
627// Read and check the HCI version of the controller.
628TEST_P(BluetoothHidlTest, HciVersionTest) {
629 hidl_vec<uint8_t> cmd = COMMAND_HCI_READ_LOCAL_VERSION_INFORMATION;
630 bluetooth->sendHciCommand(cmd);
631
632 wait_for_event();
633 if (event_queue.size() == 0) return;
634
635 hidl_vec<uint8_t> event = event_queue.front();
636 event_queue.pop();
637 EXPECT_GT(event.size(), static_cast<size_t>(EVENT_LOCAL_LMP_VERSION_BYTE));
638
639 EXPECT_EQ(EVENT_COMMAND_COMPLETE, event[EVENT_CODE_BYTE]);
640 EXPECT_EQ(cmd[0], event[EVENT_COMMAND_COMPLETE_OPCODE_LSBYTE]);
641 EXPECT_EQ(cmd[1], event[EVENT_COMMAND_COMPLETE_OPCODE_LSBYTE + 1]);
642 EXPECT_EQ(HCI_STATUS_SUCCESS, event[EVENT_COMMAND_COMPLETE_STATUS_BYTE]);
643
644 EXPECT_LE(HCI_MINIMUM_HCI_VERSION, event[EVENT_LOCAL_HCI_VERSION_BYTE]);
645 EXPECT_LE(HCI_MINIMUM_LMP_VERSION, event[EVENT_LOCAL_LMP_VERSION_BYTE]);
646}
647
648// Send an unknown HCI command and wait for the error message.
649TEST_P(BluetoothHidlTest, HciUnknownCommand) {
650 hidl_vec<uint8_t> cmd = COMMAND_HCI_SHOULD_BE_UNKNOWN;
651 bluetooth->sendHciCommand(cmd);
652
653 wait_for_event();
654 if (event_queue.size() == 0) return;
655
656 hidl_vec<uint8_t> event = event_queue.front();
657 event_queue.pop();
658
659 EXPECT_GT(event.size(),
660 static_cast<size_t>(EVENT_COMMAND_COMPLETE_STATUS_BYTE));
661 if (event[EVENT_CODE_BYTE] == EVENT_COMMAND_COMPLETE) {
662 EXPECT_EQ(cmd[0], event[EVENT_COMMAND_COMPLETE_OPCODE_LSBYTE]);
663 EXPECT_EQ(cmd[1], event[EVENT_COMMAND_COMPLETE_OPCODE_LSBYTE + 1]);
664 EXPECT_EQ(HCI_STATUS_UNKNOWN_HCI_COMMAND,
665 event[EVENT_COMMAND_COMPLETE_STATUS_BYTE]);
666 } else {
667 EXPECT_EQ(EVENT_COMMAND_STATUS, event[EVENT_CODE_BYTE]);
668 EXPECT_EQ(cmd[0], event[EVENT_COMMAND_STATUS_OPCODE_LSBYTE]);
669 EXPECT_EQ(cmd[1], event[EVENT_COMMAND_STATUS_OPCODE_LSBYTE + 1]);
670 EXPECT_EQ(HCI_STATUS_UNKNOWN_HCI_COMMAND,
671 event[EVENT_COMMAND_STATUS_STATUS_BYTE]);
672 }
673}
674
675// Enter loopback mode, but don't send any packets.
676TEST_P(BluetoothHidlTest, WriteLoopbackMode) {
677 std::vector<uint16_t> sco_connection_handles;
678 std::vector<uint16_t> acl_connection_handles;
679 enterLoopbackMode(&sco_connection_handles, &acl_connection_handles);
680}
681
682// Enter loopback mode and send single packets.
683TEST_P(BluetoothHidlTest, LoopbackModeSinglePackets) {
684 setBufferSizes();
685
686 std::vector<uint16_t> sco_connection_handles;
687 std::vector<uint16_t> acl_connection_handles;
688 enterLoopbackMode(&sco_connection_handles, &acl_connection_handles);
689
690 sendAndCheckHCI(1);
691
692 // This should work, but breaks on some current platforms. Figure out how to
693 // grandfather older devices but test new ones.
694 if (0 && sco_connection_handles.size() > 0) {
695 EXPECT_LT(0, max_sco_data_packet_length);
696 sendAndCheckSCO(1, max_sco_data_packet_length, sco_connection_handles[0]);
697 int sco_packets_sent = 1;
698 int completed_packets =
699 wait_for_completed_packets_event(sco_connection_handles[0]);
700 if (sco_packets_sent != completed_packets) {
701 ALOGW("%s: packets_sent (%d) != completed_packets (%d)", __func__,
702 sco_packets_sent, completed_packets);
703 }
704 }
705
706 if (acl_connection_handles.size() > 0) {
707 EXPECT_LT(0, max_acl_data_packet_length);
708 sendAndCheckACL(1, max_acl_data_packet_length, acl_connection_handles[0]);
709 int acl_packets_sent = 1;
710 int completed_packets =
711 wait_for_completed_packets_event(acl_connection_handles[0]);
712 if (acl_packets_sent != completed_packets) {
713 ALOGW("%s: packets_sent (%d) != completed_packets (%d)", __func__,
714 acl_packets_sent, completed_packets);
715 }
716 }
717}
718
719// Enter loopback mode and send packets for bandwidth measurements.
720TEST_P(BluetoothHidlTest, LoopbackModeBandwidth) {
721 setBufferSizes();
722
723 std::vector<uint16_t> sco_connection_handles;
724 std::vector<uint16_t> acl_connection_handles;
725 enterLoopbackMode(&sco_connection_handles, &acl_connection_handles);
726
727 sendAndCheckHCI(NUM_HCI_COMMANDS_BANDWIDTH);
728
729 // This should work, but breaks on some current platforms. Figure out how to
730 // grandfather older devices but test new ones.
731 if (0 && sco_connection_handles.size() > 0) {
732 EXPECT_LT(0, max_sco_data_packet_length);
733 sendAndCheckSCO(NUM_SCO_PACKETS_BANDWIDTH, max_sco_data_packet_length,
734 sco_connection_handles[0]);
735 int sco_packets_sent = NUM_SCO_PACKETS_BANDWIDTH;
736 int completed_packets =
737 wait_for_completed_packets_event(sco_connection_handles[0]);
738 if (sco_packets_sent != completed_packets) {
739 ALOGW("%s: packets_sent (%d) != completed_packets (%d)", __func__,
740 sco_packets_sent, completed_packets);
741 }
742 }
743
744 if (acl_connection_handles.size() > 0) {
745 EXPECT_LT(0, max_acl_data_packet_length);
746 sendAndCheckACL(NUM_ACL_PACKETS_BANDWIDTH, max_acl_data_packet_length,
747 acl_connection_handles[0]);
748 int acl_packets_sent = NUM_ACL_PACKETS_BANDWIDTH;
749 int completed_packets =
750 wait_for_completed_packets_event(acl_connection_handles[0]);
751 if (acl_packets_sent != completed_packets) {
752 ALOGW("%s: packets_sent (%d) != completed_packets (%d)", __func__,
753 acl_packets_sent, completed_packets);
754 }
755 }
756}
757
Dan Shiba4d5322020-07-28 13:09:30 -0700758GTEST_ALLOW_UNINSTANTIATED_PARAMETERIZED_TEST(BluetoothHidlTest);
Jakub Pawlowski13b4d312019-11-05 12:27:29 +0100759INSTANTIATE_TEST_SUITE_P(
760 PerInstance, BluetoothHidlTest,
761 testing::ValuesIn(
762 android::hardware::getAllHalInstanceNames(IBluetoothHci::descriptor)),
763 android::hardware::PrintInstanceNameToString);