1 /*
2 * Copyright (C) 2021 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 "android.hardware.usb@1.3-service.barbet"
18
19 #include <android-base/logging.h>
20 #include <android-base/properties.h>
21 #include <assert.h>
22 #include <dirent.h>
23 #include <pthread.h>
24 #include <stdio.h>
25 #include <sys/types.h>
26 #include <unistd.h>
27 #include <chrono>
28 #include <regex>
29 #include <thread>
30 #include <unordered_map>
31
32 #include <cutils/uevent.h>
33 #include <sys/epoll.h>
34 #include <utils/Errors.h>
35 #include <utils/StrongPointer.h>
36
37 #include "Usb.h"
38
39 using android::base::GetProperty;
40
41 namespace android {
42 namespace hardware {
43 namespace usb {
44 namespace V1_3 {
45 namespace implementation {
46
enableUsbDataSignal(bool enable)47 Return<bool> Usb::enableUsbDataSignal(bool enable) {
48 bool result = true;
49
50 ALOGI("Userspace turn %s USB data signaling", enable ? "on" : "off");
51
52 if (enable) {
53 if (!WriteStringToFile("1", USB_DATA_PATH)) {
54 ALOGE("Not able to turn on usb connection notification");
55 result = false;
56 }
57
58 if (!WriteStringToFile(kGadgetName, PULLUP_PATH)) {
59 ALOGE("Gadget cannot be pulled up");
60 result = false;
61 }
62 } else {
63 if (!WriteStringToFile("1", ID_PATH)) {
64 ALOGE("Not able to turn off host mode");
65 result = false;
66 }
67
68 if (!WriteStringToFile("0", VBUS_PATH)) {
69 ALOGE("Not able to set Vbus state");
70 result = false;
71 }
72
73 if (!WriteStringToFile("0", USB_DATA_PATH)) {
74 ALOGE("Not able to turn on usb connection notification");
75 result = false;
76 }
77
78 if (!WriteStringToFile("none", PULLUP_PATH)) {
79 ALOGE("Gadget cannot be pulled down");
80 result = false;
81 }
82 }
83
84 return result;
85 }
86
87 // Set by the signal handler to destroy the thread
88 volatile bool destroyThread;
89
90 constexpr char kEnabledPath[] = "/sys/class/power_supply/usb/moisture_detection_enabled";
91 constexpr char kDetectedPath[] = "/sys/class/power_supply/usb/moisture_detected";
92 constexpr char kConsole[] = "init.svc.console";
93 constexpr char kDisableContatminantDetection[] = "vendor.usb.contaminantdisable";
94
95 void queryVersionHelper(implementation::Usb *usb, hidl_vec<PortStatus> *currentPortStatus_1_2);
96
readFile(const std::string & filename,std::string * contents)97 int32_t readFile(const std::string &filename, std::string *contents) {
98 FILE *fp;
99 ssize_t read = 0;
100 char *line = NULL;
101 size_t len = 0;
102
103 fp = fopen(filename.c_str(), "r");
104 if (fp != NULL) {
105 if ((read = getline(&line, &len, fp)) != -1) {
106 char *pos;
107 if ((pos = strchr(line, '\n')) != NULL)
108 *pos = '\0';
109 *contents = line;
110 }
111 free(line);
112 fclose(fp);
113 return 0;
114 } else {
115 ALOGE("fopen failed");
116 }
117
118 return -1;
119 }
120
writeFile(const std::string & filename,const std::string & contents)121 int32_t writeFile(const std::string &filename, const std::string &contents) {
122 FILE *fp;
123 std::string written;
124
125 fp = fopen(filename.c_str(), "w");
126 if (fp != NULL) {
127 // FAILURE RETRY
128 int ret = fputs(contents.c_str(), fp);
129 fclose(fp);
130 if ((ret != EOF) && !readFile(filename, &written) && written == contents)
131 return 0;
132 }
133 return -1;
134 }
135
queryMoistureDetectionStatus(hidl_vec<PortStatus> * currentPortStatus_1_2)136 Status queryMoistureDetectionStatus(hidl_vec<PortStatus> *currentPortStatus_1_2) {
137 std::string enabled, status;
138
139 if (currentPortStatus_1_2 == NULL || currentPortStatus_1_2->size() == 0) {
140 ALOGE("currentPortStatus_1_2 is not available");
141 return Status::ERROR;
142 }
143
144 (*currentPortStatus_1_2)[0].supportedContaminantProtectionModes = 0;
145 (*currentPortStatus_1_2)[0].supportedContaminantProtectionModes |=
146 V1_2::ContaminantProtectionMode::FORCE_SINK;
147 (*currentPortStatus_1_2)[0].contaminantProtectionStatus = V1_2::ContaminantProtectionStatus::NONE;
148 (*currentPortStatus_1_2)[0].contaminantDetectionStatus = V1_2::ContaminantDetectionStatus::DISABLED;
149 (*currentPortStatus_1_2)[0].supportsEnableContaminantPresenceDetection = true;
150 (*currentPortStatus_1_2)[0].supportsEnableContaminantPresenceProtection = false;
151
152 if (readFile(kEnabledPath, &enabled)) {
153 ALOGE("Failed to open moisture_detection_enabled");
154 return Status::ERROR;
155 }
156
157 if (enabled == "1") {
158 if (readFile(kDetectedPath, &status)) {
159 ALOGE("Failed to open moisture_detected");
160 return Status::ERROR;
161 }
162 if (status == "1") {
163 (*currentPortStatus_1_2)[0].contaminantDetectionStatus =
164 V1_2::ContaminantDetectionStatus::DETECTED;
165 (*currentPortStatus_1_2)[0].contaminantProtectionStatus =
166 V1_2::ContaminantProtectionStatus::FORCE_SINK;
167 } else
168 (*currentPortStatus_1_2)[0].contaminantDetectionStatus =
169 V1_2::ContaminantDetectionStatus::NOT_DETECTED;
170 }
171
172 ALOGI("ContaminantDetectionStatus:%d ContaminantProtectionStatus:%d",
173 (*currentPortStatus_1_2)[0].contaminantDetectionStatus,
174 (*currentPortStatus_1_2)[0].contaminantProtectionStatus);
175
176 return Status::SUCCESS;
177 }
178
enableContaminantPresenceDetection(const hidl_string &,bool enable)179 Return<void> Usb::enableContaminantPresenceDetection(const hidl_string & /*portName*/,
180 bool enable) {
181
182 std::string status = GetProperty(kConsole, "");
183 std::string disable = GetProperty(kDisableContatminantDetection, "");
184
185 if (status != "running" && disable != "true")
186 writeFile(kEnabledPath, enable ? "1" : "0");
187
188 hidl_vec<PortStatus> currentPortStatus_1_2;
189
190 queryVersionHelper(this, ¤tPortStatus_1_2);
191 return Void();
192 }
193
enableContaminantPresenceProtection(const hidl_string &,bool)194 Return<void> Usb::enableContaminantPresenceProtection(const hidl_string & /*portName*/,
195 bool /*enable*/) {
196 hidl_vec<PortStatus> currentPortStatus_1_2;
197
198 queryVersionHelper(this, ¤tPortStatus_1_2);
199 return Void();
200 }
201
appendRoleNodeHelper(const std::string & portName,PortRoleType type)202 std::string appendRoleNodeHelper(const std::string &portName, PortRoleType type) {
203 std::string node("/sys/class/typec/" + portName);
204
205 switch (type) {
206 case PortRoleType::DATA_ROLE:
207 return node + "/data_role";
208 case PortRoleType::POWER_ROLE:
209 return node + "/power_role";
210 case PortRoleType::MODE:
211 return node + "/port_type";
212 default:
213 return "";
214 }
215 }
216
convertRoletoString(PortRole role)217 std::string convertRoletoString(PortRole role) {
218 if (role.type == PortRoleType::POWER_ROLE) {
219 if (role.role == static_cast<uint32_t>(PortPowerRole::SOURCE))
220 return "source";
221 else if (role.role == static_cast<uint32_t>(PortPowerRole::SINK))
222 return "sink";
223 } else if (role.type == PortRoleType::DATA_ROLE) {
224 if (role.role == static_cast<uint32_t>(PortDataRole::HOST))
225 return "host";
226 if (role.role == static_cast<uint32_t>(PortDataRole::DEVICE))
227 return "device";
228 } else if (role.type == PortRoleType::MODE) {
229 if (role.role == static_cast<uint32_t>(PortMode_1_1::UFP))
230 return "sink";
231 if (role.role == static_cast<uint32_t>(PortMode_1_1::DFP))
232 return "source";
233 }
234 return "none";
235 }
236
extractRole(std::string * roleName)237 void extractRole(std::string *roleName) {
238 std::size_t first, last;
239
240 first = roleName->find("[");
241 last = roleName->find("]");
242
243 if (first != std::string::npos && last != std::string::npos) {
244 *roleName = roleName->substr(first + 1, last - first - 1);
245 }
246 }
247
switchToDrp(const std::string & portName)248 void switchToDrp(const std::string &portName) {
249 std::string filename = appendRoleNodeHelper(std::string(portName.c_str()), PortRoleType::MODE);
250 FILE *fp;
251
252 if (filename != "") {
253 fp = fopen(filename.c_str(), "w");
254 if (fp != NULL) {
255 int ret = fputs("dual", fp);
256 fclose(fp);
257 if (ret == EOF)
258 ALOGE("Fatal: Error while switching back to drp");
259 } else {
260 ALOGE("Fatal: Cannot open file to switch back to drp");
261 }
262 } else {
263 ALOGE("Fatal: invalid node type");
264 }
265 }
266
switchMode(const hidl_string & portName,const PortRole & newRole,struct Usb * usb)267 bool switchMode(const hidl_string &portName, const PortRole &newRole, struct Usb *usb) {
268 std::string filename = appendRoleNodeHelper(std::string(portName.c_str()), newRole.type);
269 std::string written;
270 FILE *fp;
271 bool roleSwitch = false;
272
273 if (filename == "") {
274 ALOGE("Fatal: invalid node type");
275 return false;
276 }
277
278 fp = fopen(filename.c_str(), "w");
279 if (fp != NULL) {
280 // Hold the lock here to prevent loosing connected signals
281 // as once the file is written the partner added signal
282 // can arrive anytime.
283 pthread_mutex_lock(&usb->mPartnerLock);
284 usb->mPartnerUp = false;
285 int ret = fputs(convertRoletoString(newRole).c_str(), fp);
286 fclose(fp);
287
288 if (ret != EOF) {
289 struct timespec to;
290 struct timespec now;
291
292 wait_again:
293 clock_gettime(CLOCK_MONOTONIC, &now);
294 to.tv_sec = now.tv_sec + PORT_TYPE_TIMEOUT;
295 to.tv_nsec = now.tv_nsec;
296
297 int err = pthread_cond_timedwait(&usb->mPartnerCV, &usb->mPartnerLock, &to);
298 // There are no uevent signals which implies role swap timed out.
299 if (err == ETIMEDOUT) {
300 ALOGI("uevents wait timedout");
301 // Sanity check.
302 } else if (!usb->mPartnerUp) {
303 goto wait_again;
304 // Role switch succeeded since usb->mPartnerUp is true.
305 } else {
306 roleSwitch = true;
307 }
308 } else {
309 ALOGI("Role switch failed while wrting to file");
310 }
311 pthread_mutex_unlock(&usb->mPartnerLock);
312 }
313
314 if (!roleSwitch)
315 switchToDrp(std::string(portName.c_str()));
316
317 return roleSwitch;
318 }
319
Usb()320 Usb::Usb()
321 : mLock(PTHREAD_MUTEX_INITIALIZER),
322 mRoleSwitchLock(PTHREAD_MUTEX_INITIALIZER),
323 mPartnerLock(PTHREAD_MUTEX_INITIALIZER),
324 mPartnerUp(false) {
325 pthread_condattr_t attr;
326 if (pthread_condattr_init(&attr)) {
327 ALOGE("pthread_condattr_init failed: %s", strerror(errno));
328 abort();
329 }
330 if (pthread_condattr_setclock(&attr, CLOCK_MONOTONIC)) {
331 ALOGE("pthread_condattr_setclock failed: %s", strerror(errno));
332 abort();
333 }
334 if (pthread_cond_init(&mPartnerCV, &attr)) {
335 ALOGE("pthread_cond_init failed: %s", strerror(errno));
336 abort();
337 }
338 if (pthread_condattr_destroy(&attr)) {
339 ALOGE("pthread_condattr_destroy failed: %s", strerror(errno));
340 abort();
341 }
342 }
343
switchRole(const hidl_string & portName,const V1_0::PortRole & newRole)344 Return<void> Usb::switchRole(const hidl_string &portName, const V1_0::PortRole &newRole) {
345 std::string filename = appendRoleNodeHelper(std::string(portName.c_str()), newRole.type);
346 std::string written;
347 FILE *fp;
348 bool roleSwitch = false;
349
350 if (filename == "") {
351 ALOGE("Fatal: invalid node type");
352 return Void();
353 }
354
355 pthread_mutex_lock(&mRoleSwitchLock);
356
357 ALOGI("filename write: %s role:%s", filename.c_str(), convertRoletoString(newRole).c_str());
358
359 if (newRole.type == PortRoleType::MODE) {
360 roleSwitch = switchMode(portName, newRole, this);
361 } else {
362 fp = fopen(filename.c_str(), "w");
363 if (fp != NULL) {
364 int ret = fputs(convertRoletoString(newRole).c_str(), fp);
365 fclose(fp);
366 if ((ret != EOF) && !readFile(filename, &written)) {
367 extractRole(&written);
368 ALOGI("written: %s", written.c_str());
369 if (written == convertRoletoString(newRole)) {
370 roleSwitch = true;
371 } else {
372 ALOGE("Role switch failed");
373 }
374 } else {
375 ALOGE("failed to update the new role");
376 }
377 } else {
378 ALOGE("fopen failed");
379 }
380 }
381
382 pthread_mutex_lock(&mLock);
383 if (mCallback_1_0 != NULL) {
384 Return<void> ret = mCallback_1_0->notifyRoleSwitchStatus(
385 portName, newRole, roleSwitch ? Status::SUCCESS : Status::ERROR);
386 if (!ret.isOk())
387 ALOGE("RoleSwitchStatus error %s", ret.description().c_str());
388 } else {
389 ALOGE("Not notifying the userspace. Callback is not set");
390 }
391 pthread_mutex_unlock(&mLock);
392 pthread_mutex_unlock(&mRoleSwitchLock);
393
394 return Void();
395 }
396
getAccessoryConnected(const std::string & portName,std::string * accessory)397 Status getAccessoryConnected(const std::string &portName, std::string *accessory) {
398 std::string filename = "/sys/class/typec/" + portName + "-partner/accessory_mode";
399
400 if (readFile(filename, accessory)) {
401 ALOGE("getAccessoryConnected: Failed to open filesystem node: %s", filename.c_str());
402 return Status::ERROR;
403 }
404
405 return Status::SUCCESS;
406 }
407
getCurrentRoleHelper(const std::string & portName,bool connected,PortRoleType type,uint32_t * currentRole)408 Status getCurrentRoleHelper(const std::string &portName, bool connected, PortRoleType type,
409 uint32_t *currentRole) {
410 std::string filename;
411 std::string roleName;
412 std::string accessory;
413
414 // Mode
415
416 if (type == PortRoleType::POWER_ROLE) {
417 filename = "/sys/class/typec/" + portName + "/power_role";
418 *currentRole = static_cast<uint32_t>(PortPowerRole::NONE);
419 } else if (type == PortRoleType::DATA_ROLE) {
420 filename = "/sys/class/typec/" + portName + "/data_role";
421 *currentRole = static_cast<uint32_t>(PortDataRole::NONE);
422 } else if (type == PortRoleType::MODE) {
423 filename = "/sys/class/typec/" + portName + "/data_role";
424 *currentRole = static_cast<uint32_t>(PortMode_1_1::NONE);
425 } else {
426 return Status::ERROR;
427 }
428
429 if (!connected)
430 return Status::SUCCESS;
431
432 if (type == PortRoleType::MODE) {
433 if (getAccessoryConnected(portName, &accessory) != Status::SUCCESS) {
434 return Status::ERROR;
435 }
436 if (accessory == "analog_audio") {
437 *currentRole = static_cast<uint32_t>(PortMode_1_1::AUDIO_ACCESSORY);
438 return Status::SUCCESS;
439 } else if (accessory == "debug") {
440 *currentRole = static_cast<uint32_t>(PortMode_1_1::DEBUG_ACCESSORY);
441 return Status::SUCCESS;
442 }
443 }
444
445 if (readFile(filename, &roleName)) {
446 ALOGE("getCurrentRole: Failed to open filesystem node: %s", filename.c_str());
447 return Status::ERROR;
448 }
449
450 extractRole(&roleName);
451
452 if (roleName == "source") {
453 *currentRole = static_cast<uint32_t>(PortPowerRole::SOURCE);
454 } else if (roleName == "sink") {
455 *currentRole = static_cast<uint32_t>(PortPowerRole::SINK);
456 } else if (roleName == "host") {
457 if (type == PortRoleType::DATA_ROLE)
458 *currentRole = static_cast<uint32_t>(PortDataRole::HOST);
459 else
460 *currentRole = static_cast<uint32_t>(PortMode_1_1::DFP);
461 } else if (roleName == "device") {
462 if (type == PortRoleType::DATA_ROLE)
463 *currentRole = static_cast<uint32_t>(PortDataRole::DEVICE);
464 else
465 *currentRole = static_cast<uint32_t>(PortMode_1_1::UFP);
466 } else if (roleName != "none") {
467 /* case for none has already been addressed.
468 * so we check if the role isnt none.
469 */
470 return Status::UNRECOGNIZED_ROLE;
471 }
472
473 return Status::SUCCESS;
474 }
475
getTypeCPortNamesHelper(std::unordered_map<std::string,bool> * names)476 Status getTypeCPortNamesHelper(std::unordered_map<std::string, bool> *names) {
477 DIR *dp;
478
479 dp = opendir("/sys/class/typec");
480 if (dp != NULL) {
481 struct dirent *ep;
482
483 while ((ep = readdir(dp))) {
484 if (ep->d_type == DT_LNK) {
485 if (std::string::npos == std::string(ep->d_name).find("-partner")) {
486 std::unordered_map<std::string, bool>::const_iterator portName =
487 names->find(ep->d_name);
488 if (portName == names->end()) {
489 names->insert({ep->d_name, false});
490 }
491 } else {
492 (*names)[std::strtok(ep->d_name, "-")] = true;
493 }
494 }
495 }
496 closedir(dp);
497 return Status::SUCCESS;
498 }
499
500 ALOGE("Failed to open /sys/class/typec");
501 return Status::ERROR;
502 }
503
canSwitchRoleHelper(const std::string & portName,PortRoleType)504 bool canSwitchRoleHelper(const std::string &portName, PortRoleType /*type*/) {
505 std::string filename = "/sys/class/typec/" + portName + "-partner/supports_usb_power_delivery";
506 std::string supportsPD;
507
508 if (!readFile(filename, &supportsPD)) {
509 if (supportsPD == "yes") {
510 return true;
511 }
512 }
513
514 return false;
515 }
516
517 /*
518 * Reuse the same method for both V1_0 and V1_1 callback objects.
519 * The caller of this method would reconstruct the V1_0::PortStatus
520 * object if required.
521 */
getPortStatusHelper(hidl_vec<PortStatus> * currentPortStatus_1_2,HALVersion version)522 Status getPortStatusHelper(hidl_vec<PortStatus> *currentPortStatus_1_2, HALVersion version) {
523 std::unordered_map<std::string, bool> names;
524 Status result = getTypeCPortNamesHelper(&names);
525 int i = -1;
526
527 if (result == Status::SUCCESS) {
528 currentPortStatus_1_2->resize(names.size());
529 for (std::pair<std::string, bool> port : names) {
530 i++;
531 ALOGI("%s", port.first.c_str());
532 (*currentPortStatus_1_2)[i].status_1_1.status.portName = port.first;
533
534 uint32_t currentRole;
535 if (getCurrentRoleHelper(port.first, port.second, PortRoleType::POWER_ROLE,
536 ¤tRole) == Status::SUCCESS) {
537 (*currentPortStatus_1_2)[i].status_1_1.status.currentPowerRole =
538 static_cast<PortPowerRole>(currentRole);
539 } else {
540 ALOGE("Error while retreiving portNames");
541 goto done;
542 }
543
544 if (getCurrentRoleHelper(port.first, port.second, PortRoleType::DATA_ROLE,
545 ¤tRole) == Status::SUCCESS) {
546 (*currentPortStatus_1_2)[i].status_1_1.status.currentDataRole =
547 static_cast<PortDataRole>(currentRole);
548 } else {
549 ALOGE("Error while retreiving current port role");
550 goto done;
551 }
552
553 if (getCurrentRoleHelper(port.first, port.second, PortRoleType::MODE, ¤tRole) ==
554 Status::SUCCESS) {
555 (*currentPortStatus_1_2)[i].status_1_1.currentMode =
556 static_cast<PortMode_1_1>(currentRole);
557 (*currentPortStatus_1_2)[i].status_1_1.status.currentMode =
558 static_cast<V1_0::PortMode>(currentRole);
559 } else {
560 ALOGE("Error while retreiving current data role");
561 goto done;
562 }
563
564 (*currentPortStatus_1_2)[i].status_1_1.status.canChangeMode = true;
565 (*currentPortStatus_1_2)[i].status_1_1.status.canChangeDataRole =
566 port.second ? canSwitchRoleHelper(port.first, PortRoleType::DATA_ROLE) : false;
567 (*currentPortStatus_1_2)[i].status_1_1.status.canChangePowerRole =
568 port.second ? canSwitchRoleHelper(port.first, PortRoleType::POWER_ROLE) : false;
569
570 if (version == HALVersion::V1_0) {
571 ALOGI("HAL version V1_0");
572 (*currentPortStatus_1_2)[i].status_1_1.status.supportedModes = V1_0::PortMode::DRP;
573 } else {
574 if (version == HALVersion::V1_1)
575 ALOGI("HAL version V1_1");
576 else
577 ALOGI("HAL version V1_2");
578 (*currentPortStatus_1_2)[i].status_1_1.supportedModes = 0 | PortMode_1_1::DRP;
579 (*currentPortStatus_1_2)[i].status_1_1.status.supportedModes = V1_0::PortMode::NONE;
580 (*currentPortStatus_1_2)[i].status_1_1.status.currentMode = V1_0::PortMode::NONE;
581 }
582
583 ALOGI(
584 "%d:%s connected:%d canChangeMode:%d canChagedata:%d canChangePower:%d "
585 "supportedModes:%d",
586 i, port.first.c_str(), port.second,
587 (*currentPortStatus_1_2)[i].status_1_1.status.canChangeMode,
588 (*currentPortStatus_1_2)[i].status_1_1.status.canChangeDataRole,
589 (*currentPortStatus_1_2)[i].status_1_1.status.canChangePowerRole,
590 (*currentPortStatus_1_2)[i].status_1_1.supportedModes);
591 }
592 return Status::SUCCESS;
593 }
594 done:
595 return Status::ERROR;
596 }
597
queryVersionHelper(implementation::Usb * usb,hidl_vec<PortStatus> * currentPortStatus_1_2)598 void queryVersionHelper(implementation::Usb *usb, hidl_vec<PortStatus> *currentPortStatus_1_2) {
599 hidl_vec<V1_1::PortStatus_1_1> currentPortStatus_1_1;
600 hidl_vec<V1_0::PortStatus> currentPortStatus;
601 Status status;
602 sp<V1_1::IUsbCallback> callback_V1_1 = V1_1::IUsbCallback::castFrom(usb->mCallback_1_0);
603 sp<IUsbCallback> callback_V1_2 = IUsbCallback::castFrom(usb->mCallback_1_0);
604
605 pthread_mutex_lock(&usb->mLock);
606 if (usb->mCallback_1_0 != NULL) {
607 if (callback_V1_2 != NULL) {
608 status = getPortStatusHelper(currentPortStatus_1_2, HALVersion::V1_2);
609 if (status == Status::SUCCESS)
610 queryMoistureDetectionStatus(currentPortStatus_1_2);
611 } else if (callback_V1_1 != NULL) {
612 status = getPortStatusHelper(currentPortStatus_1_2, HALVersion::V1_1);
613 currentPortStatus_1_1.resize(currentPortStatus_1_2->size());
614 for (unsigned long i = 0; i < currentPortStatus_1_2->size(); i++)
615 currentPortStatus_1_1[i] = (*currentPortStatus_1_2)[i].status_1_1;
616 } else {
617 status = getPortStatusHelper(currentPortStatus_1_2, HALVersion::V1_0);
618 currentPortStatus.resize(currentPortStatus_1_2->size());
619 for (unsigned long i = 0; i < currentPortStatus_1_2->size(); i++)
620 currentPortStatus[i] = (*currentPortStatus_1_2)[i].status_1_1.status;
621 }
622
623 Return<void> ret;
624
625 if (callback_V1_2 != NULL)
626 ret = callback_V1_2->notifyPortStatusChange_1_2(*currentPortStatus_1_2, status);
627 else if (callback_V1_1 != NULL)
628 ret = callback_V1_1->notifyPortStatusChange_1_1(currentPortStatus_1_1, status);
629 else
630 ret = usb->mCallback_1_0->notifyPortStatusChange(currentPortStatus, status);
631
632 if (!ret.isOk())
633 ALOGE("queryPortStatus_1_2 error %s", ret.description().c_str());
634 } else {
635 ALOGI("Notifying userspace skipped. Callback is NULL");
636 }
637 pthread_mutex_unlock(&usb->mLock);
638 }
639
queryPortStatus()640 Return<void> Usb::queryPortStatus() {
641 hidl_vec<PortStatus> currentPortStatus_1_2;
642
643 queryVersionHelper(this, ¤tPortStatus_1_2);
644 return Void();
645 }
646
647 struct data {
648 int uevent_fd;
649 android::hardware::usb::V1_3::implementation::Usb *usb;
650 };
651
uevent_event(uint32_t,struct data * payload)652 static void uevent_event(uint32_t /*epevents*/, struct data *payload) {
653 char msg[UEVENT_MSG_LEN + 2];
654 char *cp;
655 int n;
656
657 n = uevent_kernel_multicast_recv(payload->uevent_fd, msg, UEVENT_MSG_LEN);
658 if (n <= 0)
659 return;
660 if (n >= UEVENT_MSG_LEN) /* overflow -- discard */
661 return;
662
663 msg[n] = '\0';
664 msg[n + 1] = '\0';
665 cp = msg;
666
667 while (*cp) {
668 if (std::regex_match(cp, std::regex("(add)(.*)(-partner)"))) {
669 ALOGI("partner added");
670 pthread_mutex_lock(&payload->usb->mPartnerLock);
671 payload->usb->mPartnerUp = true;
672 pthread_cond_signal(&payload->usb->mPartnerCV);
673 pthread_mutex_unlock(&payload->usb->mPartnerLock);
674 } else if (!strncmp(cp, "DEVTYPE=typec_", strlen("DEVTYPE=typec_")) ||
675 !strncmp(cp, "POWER_SUPPLY_MOISTURE_DETECTED",
676 strlen("POWER_SUPPLY_MOISTURE_DETECTED"))) {
677 hidl_vec<PortStatus> currentPortStatus_1_2;
678 queryVersionHelper(payload->usb, ¤tPortStatus_1_2);
679
680 // Role switch is not in progress and port is in disconnected state
681 if (!pthread_mutex_trylock(&payload->usb->mRoleSwitchLock)) {
682 for (unsigned long i = 0; i < currentPortStatus_1_2.size(); i++) {
683 DIR *dp =
684 opendir(std::string("/sys/class/typec/" +
685 std::string(currentPortStatus_1_2[i]
686 .status_1_1.status.portName.c_str()) +
687 "-partner")
688 .c_str());
689 if (dp == NULL) {
690 // PortRole role = {.role = static_cast<uint32_t>(PortMode::UFP)};
691 switchToDrp(currentPortStatus_1_2[i].status_1_1.status.portName);
692 } else {
693 closedir(dp);
694 }
695 }
696 pthread_mutex_unlock(&payload->usb->mRoleSwitchLock);
697 }
698 break;
699 }
700 /* advance to after the next \0 */
701 while (*cp++) {
702 }
703 }
704 }
705
work(void * param)706 void *work(void *param) {
707 int epoll_fd, uevent_fd;
708 struct epoll_event ev;
709 int nevents = 0;
710 struct data payload;
711
712 ALOGE("creating thread");
713
714 uevent_fd = uevent_open_socket(64 * 1024, true);
715
716 if (uevent_fd < 0) {
717 ALOGE("uevent_init: uevent_open_socket failed\n");
718 return NULL;
719 }
720
721 payload.uevent_fd = uevent_fd;
722 payload.usb = (android::hardware::usb::V1_3::implementation::Usb *)param;
723
724 fcntl(uevent_fd, F_SETFL, O_NONBLOCK);
725
726 ev.events = EPOLLIN;
727 ev.data.ptr = (void *)uevent_event;
728
729 epoll_fd = epoll_create(64);
730 if (epoll_fd == -1) {
731 ALOGE("epoll_create failed; errno=%d", errno);
732 goto error;
733 }
734
735 if (epoll_ctl(epoll_fd, EPOLL_CTL_ADD, uevent_fd, &ev) == -1) {
736 ALOGE("epoll_ctl failed; errno=%d", errno);
737 goto error;
738 }
739
740 while (!destroyThread) {
741 struct epoll_event events[64];
742
743 nevents = epoll_wait(epoll_fd, events, 64, -1);
744 if (nevents == -1) {
745 if (errno == EINTR)
746 continue;
747 ALOGE("usb epoll_wait failed; errno=%d", errno);
748 break;
749 }
750
751 for (int n = 0; n < nevents; ++n) {
752 if (events[n].data.ptr)
753 (*(void (*)(int, struct data *payload))events[n].data.ptr)(events[n].events,
754 &payload);
755 }
756 }
757
758 ALOGI("exiting worker thread");
759 error:
760 close(uevent_fd);
761
762 if (epoll_fd >= 0)
763 close(epoll_fd);
764
765 return NULL;
766 }
767
sighandler(int sig)768 void sighandler(int sig) {
769 if (sig == SIGUSR1) {
770 destroyThread = true;
771 ALOGI("destroy set");
772 return;
773 }
774 signal(SIGUSR1, sighandler);
775 }
776
setCallback(const sp<V1_0::IUsbCallback> & callback)777 Return<void> Usb::setCallback(const sp<V1_0::IUsbCallback> &callback) {
778 sp<V1_1::IUsbCallback> callback_V1_1 = V1_1::IUsbCallback::castFrom(callback);
779 sp<IUsbCallback> callback_V1_2 = IUsbCallback::castFrom(callback);
780
781 if (callback != NULL) {
782 if (callback_V1_2 != NULL)
783 ALOGI("Registering 1.2 callback");
784 else if (callback_V1_1 != NULL)
785 ALOGI("Registering 1.1 callback");
786 }
787
788 pthread_mutex_lock(&mLock);
789 /*
790 * When both the old callback and new callback values are NULL,
791 * there is no need to spin off the worker thread.
792 * When both the values are not NULL, we would already have a
793 * worker thread running, so updating the callback object would
794 * be suffice.
795 */
796 if ((mCallback_1_0 == NULL && callback == NULL) ||
797 (mCallback_1_0 != NULL && callback != NULL)) {
798 /*
799 * Always store as V1_0 callback object. Type cast to V1_1
800 * when the callback is actually invoked.
801 */
802 mCallback_1_0 = callback;
803 pthread_mutex_unlock(&mLock);
804 return Void();
805 }
806
807 mCallback_1_0 = callback;
808 ALOGI("registering callback");
809
810 // Kill the worker thread if the new callback is NULL.
811 if (mCallback_1_0 == NULL) {
812 pthread_mutex_unlock(&mLock);
813 if (!pthread_kill(mPoll, SIGUSR1)) {
814 pthread_join(mPoll, NULL);
815 ALOGI("pthread destroyed");
816 }
817 return Void();
818 }
819
820 destroyThread = false;
821 signal(SIGUSR1, sighandler);
822
823 /*
824 * Create a background thread if the old callback value is NULL
825 * and being updated with a new value.
826 */
827 if (pthread_create(&mPoll, NULL, work, this)) {
828 ALOGE("pthread creation failed %d", errno);
829 mCallback_1_0 = NULL;
830 }
831
832 pthread_mutex_unlock(&mLock);
833 return Void();
834 }
835
836 } // namespace implementation
837 } // namespace V1_3
838 } // namespace usb
839 } // namespace hardware
840 } // namespace android
841