xref: /aosp_15_r20/frameworks/native/libs/input/InputTransport.cpp (revision 38e8c45f13ce32b0dcecb25141ffecaf386fa17f)
1 //
2 // Copyright 2010 The Android Open Source Project
3 //
4 // Provides a shared memory transport for input events.
5 //
6 #define LOG_TAG "InputTransport"
7 #define ATRACE_TAG ATRACE_TAG_INPUT
8 
9 #include <errno.h>
10 #include <fcntl.h>
11 #include <inttypes.h>
12 #include <math.h>
13 #include <poll.h>
14 #include <sys/socket.h>
15 #include <sys/types.h>
16 #include <unistd.h>
17 
18 #include <android-base/logging.h>
19 #include <android-base/properties.h>
20 #include <android-base/stringprintf.h>
21 #include <binder/Parcel.h>
22 #include <cutils/properties.h>
23 #include <ftl/enum.h>
24 #include <log/log.h>
25 #include <utils/Trace.h>
26 
27 #include <com_android_input_flags.h>
28 #include <input/InputTransport.h>
29 #include <input/PrintTools.h>
30 #include <input/TraceTools.h>
31 
32 namespace input_flags = com::android::input::flags;
33 
34 namespace android {
35 
36 namespace {
37 
38 /**
39  * Log debug messages about channel messages (send message, receive message).
40  * Enable this via "adb shell setprop log.tag.InputTransportMessages DEBUG"
41  * (requires restart)
42  */
43 const bool DEBUG_CHANNEL_MESSAGES =
44         __android_log_is_loggable(ANDROID_LOG_DEBUG, LOG_TAG "Messages", ANDROID_LOG_INFO);
45 
46 /**
47  * Log debug messages whenever InputChannel objects are created/destroyed.
48  * Enable this via "adb shell setprop log.tag.InputTransportLifecycle DEBUG"
49  * (requires restart)
50  */
51 const bool DEBUG_CHANNEL_LIFECYCLE =
52         __android_log_is_loggable(ANDROID_LOG_DEBUG, LOG_TAG "Lifecycle", ANDROID_LOG_INFO);
53 
54 const bool IS_DEBUGGABLE_BUILD =
55 #if defined(__ANDROID__)
56         android::base::GetBoolProperty("ro.debuggable", false);
57 #else
58         true;
59 #endif
60 
61 /**
62  * Log debug messages relating to the producer end of the transport channel.
63  * Enable this via "adb shell setprop log.tag.InputTransportPublisher DEBUG".
64  * This requires a restart on non-debuggable (e.g. user) builds, but should take effect immediately
65  * on debuggable builds (e.g. userdebug).
66  */
debugTransportPublisher()67 bool debugTransportPublisher() {
68     if (!IS_DEBUGGABLE_BUILD) {
69         static const bool DEBUG_TRANSPORT_PUBLISHER =
70                 __android_log_is_loggable(ANDROID_LOG_DEBUG, LOG_TAG "Publisher", ANDROID_LOG_INFO);
71         return DEBUG_TRANSPORT_PUBLISHER;
72     }
73     return __android_log_is_loggable(ANDROID_LOG_DEBUG, LOG_TAG "Publisher", ANDROID_LOG_INFO);
74 }
75 
dupChannelFd(int fd)76 android::base::unique_fd dupChannelFd(int fd) {
77     android::base::unique_fd newFd(::dup(fd));
78     if (!newFd.ok()) {
79         ALOGE("Could not duplicate fd %i : %s", fd, strerror(errno));
80         const bool hitFdLimit = errno == EMFILE || errno == ENFILE;
81         // If this process is out of file descriptors, then throwing that might end up exploding
82         // on the other side of a binder call, which isn't really helpful.
83         // Better to just crash here and hope that the FD leak is slow.
84         // Other failures could be client errors, so we still propagate those back to the caller.
85         LOG_ALWAYS_FATAL_IF(hitFdLimit, "Too many open files, could not duplicate input channel");
86         return {};
87     }
88     return newFd;
89 }
90 
91 // Socket buffer size.  The default is typically about 128KB, which is much larger than
92 // we really need.  So we make it smaller.  It just needs to be big enough to hold
93 // a few dozen large multi-finger motion events in the case where an application gets
94 // behind processing touches.
95 constexpr size_t SOCKET_BUFFER_SIZE = 32 * 1024;
96 
97 /**
98  * Crash if the events that are getting sent to the InputPublisher are inconsistent.
99  * Enable this via "adb shell setprop log.tag.InputTransportVerifyEvents DEBUG"
100  */
verifyEvents()101 bool verifyEvents() {
102     return input_flags::enable_outbound_event_verification() ||
103             __android_log_is_loggable(ANDROID_LOG_DEBUG, LOG_TAG "VerifyEvents", ANDROID_LOG_INFO);
104 }
105 
106 } // namespace
107 
108 using android::base::Result;
109 using android::base::StringPrintf;
110 
111 // --- InputMessage ---
112 
isValid(size_t actualSize) const113 bool InputMessage::isValid(size_t actualSize) const {
114     if (size() != actualSize) {
115         ALOGE("Received message of incorrect size %zu (expected %zu)", actualSize, size());
116         return false;
117     }
118 
119     switch (header.type) {
120         case Type::KEY:
121             return true;
122         case Type::MOTION: {
123             const bool valid =
124                     body.motion.pointerCount > 0 && body.motion.pointerCount <= MAX_POINTERS;
125             if (!valid) {
126                 ALOGE("Received invalid MOTION: pointerCount = %" PRIu32, body.motion.pointerCount);
127             }
128             return valid;
129         }
130         case Type::FINISHED:
131         case Type::FOCUS:
132         case Type::CAPTURE:
133         case Type::DRAG:
134         case Type::TOUCH_MODE:
135             return true;
136         case Type::TIMELINE: {
137             const nsecs_t gpuCompletedTime =
138                     body.timeline.graphicsTimeline[GraphicsTimeline::GPU_COMPLETED_TIME];
139             const nsecs_t presentTime =
140                     body.timeline.graphicsTimeline[GraphicsTimeline::PRESENT_TIME];
141             const bool valid = presentTime > gpuCompletedTime;
142             if (!valid) {
143                 ALOGE("Received invalid TIMELINE: gpuCompletedTime = %" PRId64
144                       " presentTime = %" PRId64,
145                       gpuCompletedTime, presentTime);
146             }
147             return valid;
148         }
149     }
150     ALOGE("Invalid message type: %s", ftl::enum_string(header.type).c_str());
151     return false;
152 }
153 
size() const154 size_t InputMessage::size() const {
155     switch (header.type) {
156         case Type::KEY:
157             return sizeof(Header) + body.key.size();
158         case Type::MOTION:
159             return sizeof(Header) + body.motion.size();
160         case Type::FINISHED:
161             return sizeof(Header) + body.finished.size();
162         case Type::FOCUS:
163             return sizeof(Header) + body.focus.size();
164         case Type::CAPTURE:
165             return sizeof(Header) + body.capture.size();
166         case Type::DRAG:
167             return sizeof(Header) + body.drag.size();
168         case Type::TIMELINE:
169             return sizeof(Header) + body.timeline.size();
170         case Type::TOUCH_MODE:
171             return sizeof(Header) + body.touchMode.size();
172     }
173     return sizeof(Header);
174 }
175 
176 /**
177  * There could be non-zero bytes in-between InputMessage fields. Force-initialize the entire
178  * memory to zero, then only copy the valid bytes on a per-field basis.
179  */
getSanitizedCopy(InputMessage * msg) const180 void InputMessage::getSanitizedCopy(InputMessage* msg) const {
181     memset(msg, 0, sizeof(*msg));
182 
183     // Write the header
184     msg->header.type = header.type;
185     msg->header.seq = header.seq;
186 
187     // Write the body
188     switch(header.type) {
189         case InputMessage::Type::KEY: {
190             // int32_t eventId
191             msg->body.key.eventId = body.key.eventId;
192             // nsecs_t eventTime
193             msg->body.key.eventTime = body.key.eventTime;
194             // int32_t deviceId
195             msg->body.key.deviceId = body.key.deviceId;
196             // int32_t source
197             msg->body.key.source = body.key.source;
198             // int32_t displayId
199             msg->body.key.displayId = body.key.displayId;
200             // std::array<uint8_t, 32> hmac
201             msg->body.key.hmac = body.key.hmac;
202             // int32_t action
203             msg->body.key.action = body.key.action;
204             // int32_t flags
205             msg->body.key.flags = body.key.flags;
206             // int32_t keyCode
207             msg->body.key.keyCode = body.key.keyCode;
208             // int32_t scanCode
209             msg->body.key.scanCode = body.key.scanCode;
210             // int32_t metaState
211             msg->body.key.metaState = body.key.metaState;
212             // int32_t repeatCount
213             msg->body.key.repeatCount = body.key.repeatCount;
214             // nsecs_t downTime
215             msg->body.key.downTime = body.key.downTime;
216             break;
217         }
218         case InputMessage::Type::MOTION: {
219             // int32_t eventId
220             msg->body.motion.eventId = body.motion.eventId;
221             // uint32_t pointerCount
222             msg->body.motion.pointerCount = body.motion.pointerCount;
223             // nsecs_t eventTime
224             msg->body.motion.eventTime = body.motion.eventTime;
225             // int32_t deviceId
226             msg->body.motion.deviceId = body.motion.deviceId;
227             // int32_t source
228             msg->body.motion.source = body.motion.source;
229             // int32_t displayId
230             msg->body.motion.displayId = body.motion.displayId;
231             // std::array<uint8_t, 32> hmac
232             msg->body.motion.hmac = body.motion.hmac;
233             // int32_t action
234             msg->body.motion.action = body.motion.action;
235             // int32_t actionButton
236             msg->body.motion.actionButton = body.motion.actionButton;
237             // int32_t flags
238             msg->body.motion.flags = body.motion.flags;
239             // int32_t metaState
240             msg->body.motion.metaState = body.motion.metaState;
241             // int32_t buttonState
242             msg->body.motion.buttonState = body.motion.buttonState;
243             // MotionClassification classification
244             msg->body.motion.classification = body.motion.classification;
245             // int32_t edgeFlags
246             msg->body.motion.edgeFlags = body.motion.edgeFlags;
247             // nsecs_t downTime
248             msg->body.motion.downTime = body.motion.downTime;
249 
250             msg->body.motion.dsdx = body.motion.dsdx;
251             msg->body.motion.dtdx = body.motion.dtdx;
252             msg->body.motion.dtdy = body.motion.dtdy;
253             msg->body.motion.dsdy = body.motion.dsdy;
254             msg->body.motion.tx = body.motion.tx;
255             msg->body.motion.ty = body.motion.ty;
256 
257             // float xPrecision
258             msg->body.motion.xPrecision = body.motion.xPrecision;
259             // float yPrecision
260             msg->body.motion.yPrecision = body.motion.yPrecision;
261             // float xCursorPosition
262             msg->body.motion.xCursorPosition = body.motion.xCursorPosition;
263             // float yCursorPosition
264             msg->body.motion.yCursorPosition = body.motion.yCursorPosition;
265 
266             msg->body.motion.dsdxRaw = body.motion.dsdxRaw;
267             msg->body.motion.dtdxRaw = body.motion.dtdxRaw;
268             msg->body.motion.dtdyRaw = body.motion.dtdyRaw;
269             msg->body.motion.dsdyRaw = body.motion.dsdyRaw;
270             msg->body.motion.txRaw = body.motion.txRaw;
271             msg->body.motion.tyRaw = body.motion.tyRaw;
272 
273             //struct Pointer pointers[MAX_POINTERS]
274             for (size_t i = 0; i < body.motion.pointerCount; i++) {
275                 // PointerProperties properties
276                 msg->body.motion.pointers[i].properties.id = body.motion.pointers[i].properties.id;
277                 msg->body.motion.pointers[i].properties.toolType =
278                         body.motion.pointers[i].properties.toolType,
279                 // PointerCoords coords
280                 msg->body.motion.pointers[i].coords.bits = body.motion.pointers[i].coords.bits;
281                 const uint32_t count = BitSet64::count(body.motion.pointers[i].coords.bits);
282                 memcpy(&msg->body.motion.pointers[i].coords.values[0],
283                         &body.motion.pointers[i].coords.values[0],
284                         count * (sizeof(body.motion.pointers[i].coords.values[0])));
285                 msg->body.motion.pointers[i].coords.isResampled =
286                         body.motion.pointers[i].coords.isResampled;
287             }
288             break;
289         }
290         case InputMessage::Type::FINISHED: {
291             msg->body.finished.handled = body.finished.handled;
292             msg->body.finished.consumeTime = body.finished.consumeTime;
293             break;
294         }
295         case InputMessage::Type::FOCUS: {
296             msg->body.focus.eventId = body.focus.eventId;
297             msg->body.focus.hasFocus = body.focus.hasFocus;
298             break;
299         }
300         case InputMessage::Type::CAPTURE: {
301             msg->body.capture.eventId = body.capture.eventId;
302             msg->body.capture.pointerCaptureEnabled = body.capture.pointerCaptureEnabled;
303             break;
304         }
305         case InputMessage::Type::DRAG: {
306             msg->body.drag.eventId = body.drag.eventId;
307             msg->body.drag.x = body.drag.x;
308             msg->body.drag.y = body.drag.y;
309             msg->body.drag.isExiting = body.drag.isExiting;
310             break;
311         }
312         case InputMessage::Type::TIMELINE: {
313             msg->body.timeline.eventId = body.timeline.eventId;
314             msg->body.timeline.graphicsTimeline = body.timeline.graphicsTimeline;
315             break;
316         }
317         case InputMessage::Type::TOUCH_MODE: {
318             msg->body.touchMode.eventId = body.touchMode.eventId;
319             msg->body.touchMode.isInTouchMode = body.touchMode.isInTouchMode;
320         }
321     }
322 }
323 
324 // --- InputChannel ---
325 
create(const std::string & name,android::base::unique_fd fd,sp<IBinder> token)326 std::unique_ptr<InputChannel> InputChannel::create(const std::string& name,
327                                                    android::base::unique_fd fd, sp<IBinder> token) {
328     const int result = fcntl(fd, F_SETFL, O_NONBLOCK);
329     if (result != 0) {
330         LOG_ALWAYS_FATAL("channel '%s' ~ Could not make socket non-blocking: %s", name.c_str(),
331                          strerror(errno));
332         return nullptr;
333     }
334     // using 'new' to access a non-public constructor
335     return std::unique_ptr<InputChannel>(new InputChannel(name, std::move(fd), token));
336 }
337 
create(android::os::InputChannelCore && parceledChannel)338 std::unique_ptr<InputChannel> InputChannel::create(
339         android::os::InputChannelCore&& parceledChannel) {
340     return InputChannel::create(parceledChannel.name, parceledChannel.fd.release(),
341                                 parceledChannel.token);
342 }
343 
InputChannel(const std::string name,android::base::unique_fd fd,sp<IBinder> token)344 InputChannel::InputChannel(const std::string name, android::base::unique_fd fd, sp<IBinder> token) {
345     this->name = std::move(name);
346     this->fd.reset(std::move(fd));
347     this->token = std::move(token);
348     ALOGD_IF(DEBUG_CHANNEL_LIFECYCLE, "Input channel constructed: name='%s', fd=%d",
349              getName().c_str(), getFd());
350 }
351 
~InputChannel()352 InputChannel::~InputChannel() {
353     ALOGD_IF(DEBUG_CHANNEL_LIFECYCLE, "Input channel destroyed: name='%s', fd=%d",
354              getName().c_str(), getFd());
355 }
356 
openInputChannelPair(const std::string & name,std::unique_ptr<InputChannel> & outServerChannel,std::unique_ptr<InputChannel> & outClientChannel)357 status_t InputChannel::openInputChannelPair(const std::string& name,
358                                             std::unique_ptr<InputChannel>& outServerChannel,
359                                             std::unique_ptr<InputChannel>& outClientChannel) {
360     int sockets[2];
361     if (socketpair(AF_UNIX, SOCK_SEQPACKET, 0, sockets)) {
362         status_t result = -errno;
363         ALOGE("channel '%s' ~ Could not create socket pair.  errno=%s(%d)", name.c_str(),
364               strerror(errno), errno);
365         outServerChannel.reset();
366         outClientChannel.reset();
367         return result;
368     }
369 
370     int bufferSize = SOCKET_BUFFER_SIZE;
371     setsockopt(sockets[0], SOL_SOCKET, SO_SNDBUF, &bufferSize, sizeof(bufferSize));
372     setsockopt(sockets[0], SOL_SOCKET, SO_RCVBUF, &bufferSize, sizeof(bufferSize));
373     setsockopt(sockets[1], SOL_SOCKET, SO_SNDBUF, &bufferSize, sizeof(bufferSize));
374     setsockopt(sockets[1], SOL_SOCKET, SO_RCVBUF, &bufferSize, sizeof(bufferSize));
375 
376     sp<IBinder> token = sp<BBinder>::make();
377 
378     android::base::unique_fd serverFd(sockets[0]);
379     outServerChannel = InputChannel::create(name, std::move(serverFd), token);
380 
381     android::base::unique_fd clientFd(sockets[1]);
382     outClientChannel = InputChannel::create(name, std::move(clientFd), token);
383     return OK;
384 }
385 
sendMessage(const InputMessage * msg)386 status_t InputChannel::sendMessage(const InputMessage* msg) {
387     ATRACE_NAME_IF(ATRACE_ENABLED(),
388                    StringPrintf("sendMessage(inputChannel=%s, seq=0x%" PRIx32 ", type=%s)",
389                                 name.c_str(), msg->header.seq,
390                                 ftl::enum_string(msg->header.type).c_str()));
391     const size_t msgLength = msg->size();
392     InputMessage cleanMsg;
393     msg->getSanitizedCopy(&cleanMsg);
394     ssize_t nWrite;
395     do {
396         nWrite = ::send(getFd(), &cleanMsg, msgLength, MSG_DONTWAIT | MSG_NOSIGNAL);
397     } while (nWrite == -1 && errno == EINTR);
398 
399     if (nWrite < 0) {
400         int error = errno;
401         ALOGD_IF(DEBUG_CHANNEL_MESSAGES, "channel '%s' ~ error sending message of type %s, %s",
402                  name.c_str(), ftl::enum_string(msg->header.type).c_str(), strerror(error));
403         if (error == EAGAIN || error == EWOULDBLOCK) {
404             return WOULD_BLOCK;
405         }
406         if (error == EPIPE || error == ENOTCONN || error == ECONNREFUSED || error == ECONNRESET) {
407             return DEAD_OBJECT;
408         }
409         return -error;
410     }
411 
412     if (size_t(nWrite) != msgLength) {
413         ALOGD_IF(DEBUG_CHANNEL_MESSAGES,
414                  "channel '%s' ~ error sending message type %s, send was incomplete", name.c_str(),
415                  ftl::enum_string(msg->header.type).c_str());
416         return DEAD_OBJECT;
417     }
418 
419     ALOGD_IF(DEBUG_CHANNEL_MESSAGES, "channel '%s' ~ sent message of type %s", name.c_str(),
420              ftl::enum_string(msg->header.type).c_str());
421 
422     return OK;
423 }
424 
receiveMessage()425 android::base::Result<InputMessage> InputChannel::receiveMessage() {
426     ssize_t nRead;
427     InputMessage msg;
428     do {
429         nRead = ::recv(getFd(), &msg, sizeof(InputMessage), MSG_DONTWAIT);
430     } while (nRead == -1 && errno == EINTR);
431 
432     if (nRead < 0) {
433         int error = errno;
434         ALOGD_IF(DEBUG_CHANNEL_MESSAGES, "channel '%s' ~ receive message failed, errno=%d",
435                  name.c_str(), errno);
436         if (error == EAGAIN || error == EWOULDBLOCK) {
437             return android::base::Error(WOULD_BLOCK);
438         }
439         if (error == EPIPE || error == ENOTCONN || error == ECONNREFUSED) {
440             return android::base::Error(DEAD_OBJECT);
441         }
442         return android::base::Error(-error);
443     }
444 
445     if (nRead == 0) { // check for EOF
446         ALOGD_IF(DEBUG_CHANNEL_MESSAGES,
447                  "channel '%s' ~ receive message failed because peer was closed", name.c_str());
448         return android::base::Error(DEAD_OBJECT);
449     }
450 
451     if (!msg.isValid(nRead)) {
452         ALOGE("channel '%s' ~ received invalid message of size %zd", name.c_str(), nRead);
453         return android::base::Error(BAD_VALUE);
454     }
455 
456     ALOGD_IF(DEBUG_CHANNEL_MESSAGES, "channel '%s' ~ received message of type %s", name.c_str(),
457              ftl::enum_string(msg.header.type).c_str());
458     if (ATRACE_ENABLED()) {
459         // Add an additional trace point to include data about the received message.
460         std::string message =
461                 StringPrintf("receiveMessage(inputChannel=%s, seq=0x%" PRIx32 ", type=%s)",
462                              name.c_str(), msg.header.seq,
463                              ftl::enum_string(msg.header.type).c_str());
464         ATRACE_NAME(message.c_str());
465     }
466     return msg;
467 }
468 
probablyHasInput() const469 bool InputChannel::probablyHasInput() const {
470     struct pollfd pfds = {.fd = fd.get(), .events = POLLIN};
471     if (::poll(&pfds, /*nfds=*/1, /*timeout=*/0) <= 0) {
472         // This can be a false negative because EINTR and ENOMEM are not handled. The latter should
473         // be extremely rare. The EINTR is also unlikely because it happens only when the signal
474         // arrives while the syscall is executed, and the syscall is quick. Hitting EINTR too often
475         // would be a sign of having too many signals, which is a bigger performance problem. A
476         // common tradition is to repeat the syscall on each EINTR, but it is not necessary here.
477         // In other words, the missing one liner is replaced by a multiline explanation.
478         return false;
479     }
480     // From poll(2): The bits returned in |revents| can include any of those specified in |events|,
481     // or one of the values POLLERR, POLLHUP, or POLLNVAL.
482     return (pfds.revents & POLLIN) != 0;
483 }
484 
waitForMessage(std::chrono::milliseconds timeout) const485 void InputChannel::waitForMessage(std::chrono::milliseconds timeout) const {
486     if (timeout < 0ms) {
487         LOG(FATAL) << "Timeout cannot be negative, received " << timeout.count();
488     }
489     struct pollfd pfds = {.fd = fd.get(), .events = POLLIN};
490     int ret;
491     std::chrono::time_point<std::chrono::steady_clock> stopTime =
492             std::chrono::steady_clock::now() + timeout;
493     std::chrono::milliseconds remaining = timeout;
494     do {
495         ret = ::poll(&pfds, /*nfds=*/1, /*timeout=*/remaining.count());
496         remaining = std::chrono::duration_cast<std::chrono::milliseconds>(
497                 stopTime - std::chrono::steady_clock::now());
498     } while (ret == -1 && errno == EINTR && remaining > 0ms);
499 }
500 
dup() const501 std::unique_ptr<InputChannel> InputChannel::dup() const {
502     base::unique_fd newFd(dupChannelFd(fd.get()));
503     return InputChannel::create(getName(), std::move(newFd), getConnectionToken());
504 }
505 
copyTo(android::os::InputChannelCore & outChannel) const506 void InputChannel::copyTo(android::os::InputChannelCore& outChannel) const {
507     outChannel.name = getName();
508     outChannel.fd.reset(dupChannelFd(fd.get()));
509     outChannel.token = getConnectionToken();
510 }
511 
moveChannel(std::unique_ptr<InputChannel> from,android::os::InputChannelCore & outChannel)512 void InputChannel::moveChannel(std::unique_ptr<InputChannel> from,
513                                android::os::InputChannelCore& outChannel) {
514     outChannel.name = from->getName();
515     outChannel.fd = android::os::ParcelFileDescriptor(std::move(from->fd));
516     outChannel.token = from->getConnectionToken();
517 }
518 
getConnectionToken() const519 sp<IBinder> InputChannel::getConnectionToken() const {
520     return token;
521 }
522 
523 // --- InputPublisher ---
524 
InputPublisher(const std::shared_ptr<InputChannel> & channel)525 InputPublisher::InputPublisher(const std::shared_ptr<InputChannel>& channel)
526       : mChannel(channel), mInputVerifier(mChannel->getName()) {}
527 
~InputPublisher()528 InputPublisher::~InputPublisher() {
529 }
530 
publishKeyEvent(uint32_t seq,int32_t eventId,int32_t deviceId,int32_t source,ui::LogicalDisplayId displayId,std::array<uint8_t,32> hmac,int32_t action,int32_t flags,int32_t keyCode,int32_t scanCode,int32_t metaState,int32_t repeatCount,nsecs_t downTime,nsecs_t eventTime)531 status_t InputPublisher::publishKeyEvent(uint32_t seq, int32_t eventId, int32_t deviceId,
532                                          int32_t source, ui::LogicalDisplayId displayId,
533                                          std::array<uint8_t, 32> hmac, int32_t action,
534                                          int32_t flags, int32_t keyCode, int32_t scanCode,
535                                          int32_t metaState, int32_t repeatCount, nsecs_t downTime,
536                                          nsecs_t eventTime) {
537     ATRACE_NAME_IF(ATRACE_ENABLED(),
538                    StringPrintf("publishKeyEvent(inputChannel=%s, action=%s, keyCode=%s)",
539                                 mChannel->getName().c_str(), KeyEvent::actionToString(action),
540                                 KeyEvent::getLabel(keyCode)));
541     ALOGD_IF(debugTransportPublisher(),
542              "channel '%s' publisher ~ %s: seq=%u, id=%d, deviceId=%d, source=%s, "
543              "action=%s, flags=0x%x, keyCode=%s, scanCode=%d, metaState=0x%x, repeatCount=%d,"
544              "downTime=%" PRId64 ", eventTime=%" PRId64,
545              mChannel->getName().c_str(), __func__, seq, eventId, deviceId,
546              inputEventSourceToString(source).c_str(), KeyEvent::actionToString(action), flags,
547              KeyEvent::getLabel(keyCode), scanCode, metaState, repeatCount, downTime, eventTime);
548 
549     if (!seq) {
550         ALOGE("Attempted to publish a key event with sequence number 0.");
551         return BAD_VALUE;
552     }
553 
554     InputMessage msg;
555     msg.header.type = InputMessage::Type::KEY;
556     msg.header.seq = seq;
557     msg.body.key.eventId = eventId;
558     msg.body.key.deviceId = deviceId;
559     msg.body.key.source = source;
560     msg.body.key.displayId = displayId.val();
561     msg.body.key.hmac = std::move(hmac);
562     msg.body.key.action = action;
563     msg.body.key.flags = flags;
564     msg.body.key.keyCode = keyCode;
565     msg.body.key.scanCode = scanCode;
566     msg.body.key.metaState = metaState;
567     msg.body.key.repeatCount = repeatCount;
568     msg.body.key.downTime = downTime;
569     msg.body.key.eventTime = eventTime;
570     return mChannel->sendMessage(&msg);
571 }
572 
publishMotionEvent(uint32_t seq,int32_t eventId,int32_t deviceId,int32_t source,ui::LogicalDisplayId displayId,std::array<uint8_t,32> hmac,int32_t action,int32_t actionButton,int32_t flags,int32_t edgeFlags,int32_t metaState,int32_t buttonState,MotionClassification classification,const ui::Transform & transform,float xPrecision,float yPrecision,float xCursorPosition,float yCursorPosition,const ui::Transform & rawTransform,nsecs_t downTime,nsecs_t eventTime,uint32_t pointerCount,const PointerProperties * pointerProperties,const PointerCoords * pointerCoords)573 status_t InputPublisher::publishMotionEvent(
574         uint32_t seq, int32_t eventId, int32_t deviceId, int32_t source,
575         ui::LogicalDisplayId displayId, std::array<uint8_t, 32> hmac, int32_t action,
576         int32_t actionButton, int32_t flags, int32_t edgeFlags, int32_t metaState,
577         int32_t buttonState, MotionClassification classification, const ui::Transform& transform,
578         float xPrecision, float yPrecision, float xCursorPosition, float yCursorPosition,
579         const ui::Transform& rawTransform, nsecs_t downTime, nsecs_t eventTime,
580         uint32_t pointerCount, const PointerProperties* pointerProperties,
581         const PointerCoords* pointerCoords) {
582     ATRACE_NAME_IF(ATRACE_ENABLED(),
583                    StringPrintf("publishMotionEvent(inputChannel=%s, action=%s)",
584                                 mChannel->getName().c_str(),
585                                 MotionEvent::actionToString(action).c_str()));
586     if (debugTransportPublisher()) {
587         std::string transformString;
588         transform.dump(transformString, "transform", "        ");
589         ALOGD("channel '%s' publisher ~ %s: seq=%u, id=%d, deviceId=%d, source=%s, "
590               "displayId=%s, "
591               "action=%s, actionButton=0x%08x, flags=0x%x, edgeFlags=0x%x, "
592               "metaState=0x%x, buttonState=0x%x, classification=%s,"
593               "xPrecision=%f, yPrecision=%f, downTime=%" PRId64 ", eventTime=%" PRId64 ", "
594               "pointerCount=%" PRIu32 "\n%s",
595               mChannel->getName().c_str(), __func__, seq, eventId, deviceId,
596               inputEventSourceToString(source).c_str(), displayId.toString().c_str(),
597               MotionEvent::actionToString(action).c_str(), actionButton, flags, edgeFlags,
598               metaState, buttonState, motionClassificationToString(classification), xPrecision,
599               yPrecision, downTime, eventTime, pointerCount, transformString.c_str());
600     }
601 
602     if (!seq) {
603         ALOGE("Attempted to publish a motion event with sequence number 0.");
604         return BAD_VALUE;
605     }
606 
607     if (pointerCount > MAX_POINTERS || pointerCount < 1) {
608         ALOGE("channel '%s' publisher ~ Invalid number of pointers provided: %" PRIu32 ".",
609                 mChannel->getName().c_str(), pointerCount);
610         return BAD_VALUE;
611     }
612 
613     InputMessage msg;
614     msg.header.type = InputMessage::Type::MOTION;
615     msg.header.seq = seq;
616     msg.body.motion.eventId = eventId;
617     msg.body.motion.deviceId = deviceId;
618     msg.body.motion.source = source;
619     msg.body.motion.displayId = displayId.val();
620     msg.body.motion.hmac = std::move(hmac);
621     msg.body.motion.action = action;
622     msg.body.motion.actionButton = actionButton;
623     msg.body.motion.flags = flags;
624     msg.body.motion.edgeFlags = edgeFlags;
625     msg.body.motion.metaState = metaState;
626     msg.body.motion.buttonState = buttonState;
627     msg.body.motion.classification = classification;
628     msg.body.motion.dsdx = transform.dsdx();
629     msg.body.motion.dtdx = transform.dtdx();
630     msg.body.motion.dtdy = transform.dtdy();
631     msg.body.motion.dsdy = transform.dsdy();
632     msg.body.motion.tx = transform.tx();
633     msg.body.motion.ty = transform.ty();
634     msg.body.motion.xPrecision = xPrecision;
635     msg.body.motion.yPrecision = yPrecision;
636     msg.body.motion.xCursorPosition = xCursorPosition;
637     msg.body.motion.yCursorPosition = yCursorPosition;
638     msg.body.motion.dsdxRaw = rawTransform.dsdx();
639     msg.body.motion.dtdxRaw = rawTransform.dtdx();
640     msg.body.motion.dtdyRaw = rawTransform.dtdy();
641     msg.body.motion.dsdyRaw = rawTransform.dsdy();
642     msg.body.motion.txRaw = rawTransform.tx();
643     msg.body.motion.tyRaw = rawTransform.ty();
644     msg.body.motion.downTime = downTime;
645     msg.body.motion.eventTime = eventTime;
646     msg.body.motion.pointerCount = pointerCount;
647     for (uint32_t i = 0; i < pointerCount; i++) {
648         msg.body.motion.pointers[i].properties = pointerProperties[i];
649         msg.body.motion.pointers[i].coords = pointerCoords[i];
650     }
651     const status_t status = mChannel->sendMessage(&msg);
652 
653     if (status == OK && verifyEvents()) {
654         Result<void> result =
655                 mInputVerifier.processMovement(deviceId, source, action, pointerCount,
656                                                pointerProperties, pointerCoords, flags);
657         if (!result.ok()) {
658             LOG(ERROR) << "Bad stream: " << result.error();
659             return BAD_VALUE;
660         }
661     }
662     return status;
663 }
664 
publishFocusEvent(uint32_t seq,int32_t eventId,bool hasFocus)665 status_t InputPublisher::publishFocusEvent(uint32_t seq, int32_t eventId, bool hasFocus) {
666     ATRACE_NAME_IF(ATRACE_ENABLED(),
667                    StringPrintf("publishFocusEvent(inputChannel=%s, hasFocus=%s)",
668                                 mChannel->getName().c_str(), toString(hasFocus)));
669     ALOGD_IF(debugTransportPublisher(), "channel '%s' publisher ~ %s: seq=%u, id=%d, hasFocus=%s",
670              mChannel->getName().c_str(), __func__, seq, eventId, toString(hasFocus));
671 
672     InputMessage msg;
673     msg.header.type = InputMessage::Type::FOCUS;
674     msg.header.seq = seq;
675     msg.body.focus.eventId = eventId;
676     msg.body.focus.hasFocus = hasFocus;
677     return mChannel->sendMessage(&msg);
678 }
679 
publishCaptureEvent(uint32_t seq,int32_t eventId,bool pointerCaptureEnabled)680 status_t InputPublisher::publishCaptureEvent(uint32_t seq, int32_t eventId,
681                                              bool pointerCaptureEnabled) {
682     ATRACE_NAME_IF(ATRACE_ENABLED(),
683                    StringPrintf("publishCaptureEvent(inputChannel=%s, pointerCaptureEnabled=%s)",
684                                 mChannel->getName().c_str(), toString(pointerCaptureEnabled)));
685     ALOGD_IF(debugTransportPublisher(),
686              "channel '%s' publisher ~ %s: seq=%u, id=%d, pointerCaptureEnabled=%s",
687              mChannel->getName().c_str(), __func__, seq, eventId, toString(pointerCaptureEnabled));
688 
689     InputMessage msg;
690     msg.header.type = InputMessage::Type::CAPTURE;
691     msg.header.seq = seq;
692     msg.body.capture.eventId = eventId;
693     msg.body.capture.pointerCaptureEnabled = pointerCaptureEnabled;
694     return mChannel->sendMessage(&msg);
695 }
696 
publishDragEvent(uint32_t seq,int32_t eventId,float x,float y,bool isExiting)697 status_t InputPublisher::publishDragEvent(uint32_t seq, int32_t eventId, float x, float y,
698                                           bool isExiting) {
699     ATRACE_NAME_IF(ATRACE_ENABLED(),
700                    StringPrintf("publishDragEvent(inputChannel=%s, x=%f, y=%f, isExiting=%s)",
701                                 mChannel->getName().c_str(), x, y, toString(isExiting)));
702     ALOGD_IF(debugTransportPublisher(),
703              "channel '%s' publisher ~ %s: seq=%u, id=%d, x=%f, y=%f, isExiting=%s",
704              mChannel->getName().c_str(), __func__, seq, eventId, x, y, toString(isExiting));
705 
706     InputMessage msg;
707     msg.header.type = InputMessage::Type::DRAG;
708     msg.header.seq = seq;
709     msg.body.drag.eventId = eventId;
710     msg.body.drag.isExiting = isExiting;
711     msg.body.drag.x = x;
712     msg.body.drag.y = y;
713     return mChannel->sendMessage(&msg);
714 }
715 
publishTouchModeEvent(uint32_t seq,int32_t eventId,bool isInTouchMode)716 status_t InputPublisher::publishTouchModeEvent(uint32_t seq, int32_t eventId, bool isInTouchMode) {
717     ATRACE_NAME_IF(ATRACE_ENABLED(),
718                    StringPrintf("publishTouchModeEvent(inputChannel=%s, isInTouchMode=%s)",
719                                 mChannel->getName().c_str(), toString(isInTouchMode)));
720     ALOGD_IF(debugTransportPublisher(),
721              "channel '%s' publisher ~ %s: seq=%u, id=%d, isInTouchMode=%s",
722              mChannel->getName().c_str(), __func__, seq, eventId, toString(isInTouchMode));
723 
724     InputMessage msg;
725     msg.header.type = InputMessage::Type::TOUCH_MODE;
726     msg.header.seq = seq;
727     msg.body.touchMode.eventId = eventId;
728     msg.body.touchMode.isInTouchMode = isInTouchMode;
729     return mChannel->sendMessage(&msg);
730 }
731 
receiveConsumerResponse()732 android::base::Result<InputPublisher::ConsumerResponse> InputPublisher::receiveConsumerResponse() {
733     android::base::Result<InputMessage> result = mChannel->receiveMessage();
734     if (!result.ok()) {
735         if (debugTransportPublisher() && result.error().code() != WOULD_BLOCK) {
736             LOG(INFO) << "channel '" << mChannel->getName() << "' publisher ~ " << __func__ << ": "
737                       << result.error().message();
738         }
739         return result.error();
740     }
741 
742     const InputMessage& msg = *result;
743     if (msg.header.type == InputMessage::Type::FINISHED) {
744         ALOGD_IF(debugTransportPublisher(),
745                  "channel '%s' publisher ~ %s: finished: seq=%u, handled=%s",
746                  mChannel->getName().c_str(), __func__, msg.header.seq,
747                  toString(msg.body.finished.handled));
748         return Finished{
749                 .seq = msg.header.seq,
750                 .handled = msg.body.finished.handled,
751                 .consumeTime = msg.body.finished.consumeTime,
752         };
753     }
754 
755     if (msg.header.type == InputMessage::Type::TIMELINE) {
756         ALOGD_IF(debugTransportPublisher(), "channel '%s' publisher ~ %s: timeline: id=%d",
757                  mChannel->getName().c_str(), __func__, msg.body.timeline.eventId);
758         return Timeline{
759                 .inputEventId = msg.body.timeline.eventId,
760                 .graphicsTimeline = msg.body.timeline.graphicsTimeline,
761         };
762     }
763 
764     ALOGE("channel '%s' publisher ~ Received unexpected %s message from consumer",
765           mChannel->getName().c_str(), ftl::enum_string(msg.header.type).c_str());
766     return android::base::Error(UNKNOWN_ERROR);
767 }
768 
769 } // namespace android
770