1 /*
2 * Copyright (C) 2011 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 #include "ui.h"
18
19 #include <errno.h>
20 #include <fcntl.h>
21 #include <linux/input.h>
22 #include <pthread.h>
23 #include <stdarg.h>
24 #include <stdio.h>
25 #include <stdlib.h>
26 #include <string.h>
27 #include <sys/stat.h>
28 #include <sys/time.h>
29 #include <sys/types.h>
30 #include <time.h>
31 #include <unistd.h>
32
33 #include <functional>
34 #include <string>
35
36 #include <android-base/file.h>
37 #include <android-base/logging.h>
38 #include <android-base/parseint.h>
39 #include <android-base/properties.h>
40 #include <android-base/strings.h>
41 #include <cutils/android_reboot.h>
42 #include <minui/minui.h>
43
44 #include "common.h"
45 #include "roots.h"
46 #include "device.h"
47
48 static constexpr int UI_WAIT_KEY_TIMEOUT_SEC = 120;
49 static constexpr const char* BRIGHTNESS_FILE = "/sys/class/leds/lcd-backlight/brightness";
50 static constexpr const char* MAX_BRIGHTNESS_FILE = "/sys/class/leds/lcd-backlight/max_brightness";
51 static constexpr const char* BRIGHTNESS_FILE_SDM =
52 "/sys/class/backlight/panel0-backlight/brightness";
53 static constexpr const char* MAX_BRIGHTNESS_FILE_SDM =
54 "/sys/class/backlight/panel0-backlight/max_brightness";
55
RecoveryUI()56 RecoveryUI::RecoveryUI()
57 : brightness_normal_(50),
58 brightness_dimmed_(25),
59 brightness_file_(BRIGHTNESS_FILE),
60 max_brightness_file_(MAX_BRIGHTNESS_FILE),
61 touch_screen_allowed_(false),
62 kTouchLowThreshold(RECOVERY_UI_TOUCH_LOW_THRESHOLD),
63 kTouchHighThreshold(RECOVERY_UI_TOUCH_HIGH_THRESHOLD),
64 key_queue_len(0),
65 key_last_down(-1),
66 key_long_press(false),
67 key_down_count(0),
68 enable_reboot(true),
69 consecutive_power_keys(0),
70 last_key(-1),
71 has_power_key(false),
72 has_up_key(false),
73 has_down_key(false),
74 has_touch_screen(false),
75 touch_slot_(0),
76 is_bootreason_recovery_ui_(false),
77 screensaver_state_(ScreensaverState::DISABLED) {
78 pthread_mutex_init(&key_queue_mutex, nullptr);
79 pthread_cond_init(&key_queue_cond, nullptr);
80 memset(key_pressed, 0, sizeof(key_pressed));
81 }
82
OnKeyDetected(int key_code)83 void RecoveryUI::OnKeyDetected(int key_code) {
84 if (key_code == KEY_POWER) {
85 has_power_key = true;
86 } else if (key_code == KEY_DOWN || key_code == KEY_VOLUMEDOWN) {
87 has_down_key = true;
88 } else if (key_code == KEY_UP || key_code == KEY_VOLUMEUP) {
89 has_up_key = true;
90 } else if (key_code == ABS_MT_POSITION_X || key_code == ABS_MT_POSITION_Y) {
91 has_touch_screen = true;
92 }
93 }
94
95 // Reads input events, handles special hot keys, and adds to the key queue.
InputThreadLoop(void *)96 static void* InputThreadLoop(void*) {
97 while (true) {
98 if (!ev_wait(-1)) {
99 ev_dispatch();
100 }
101 }
102 return nullptr;
103 }
104
InitScreensaver()105 bool RecoveryUI::InitScreensaver() {
106 // Disabled.
107 if (brightness_normal_ == 0 || brightness_dimmed_ > brightness_normal_) {
108 return false;
109 }
110 if (access(brightness_file_.c_str(), R_OK | W_OK)) {
111 brightness_file_ = BRIGHTNESS_FILE_SDM;
112 }
113 if (access(max_brightness_file_.c_str(), R_OK)) {
114 max_brightness_file_ = MAX_BRIGHTNESS_FILE_SDM;
115 }
116 // Set the initial brightness level based on the max brightness. Note that reading the initial
117 // value from BRIGHTNESS_FILE doesn't give the actual brightness value (bullhead, sailfish), so
118 // we don't have a good way to query the default value.
119 std::string content;
120 if (!android::base::ReadFileToString(max_brightness_file_, &content)) {
121 PLOG(WARNING) << "Failed to read max brightness";
122 return false;
123 }
124
125 unsigned int max_value;
126 if (!android::base::ParseUint(android::base::Trim(content), &max_value)) {
127 LOG(WARNING) << "Failed to parse max brightness: " << content;
128 return false;
129 }
130
131 brightness_normal_value_ = max_value * brightness_normal_ / 100.0;
132 brightness_dimmed_value_ = max_value * brightness_dimmed_ / 100.0;
133 if (!android::base::WriteStringToFile(std::to_string(brightness_normal_value_),
134 brightness_file_)) {
135 PLOG(WARNING) << "Failed to set brightness";
136 return false;
137 }
138
139 LOG(INFO) << "Brightness: " << brightness_normal_value_ << " (" << brightness_normal_ << "%)";
140 screensaver_state_ = ScreensaverState::NORMAL;
141 return true;
142 }
143
Init(const std::string &)144 bool RecoveryUI::Init(const std::string& /* locale */) {
145 ev_init(std::bind(&RecoveryUI::OnInputEvent, this, std::placeholders::_1, std::placeholders::_2),
146 touch_screen_allowed_);
147
148 ev_iterate_available_keys(std::bind(&RecoveryUI::OnKeyDetected, this, std::placeholders::_1));
149
150 if (touch_screen_allowed_) {
151 ev_iterate_touch_inputs(std::bind(&RecoveryUI::OnKeyDetected, this, std::placeholders::_1));
152
153 // Parse /proc/cmdline to determine if it's booting into recovery with a bootreason of
154 // "recovery_ui". This specific reason is set by some (wear) bootloaders, to allow an easier way
155 // to turn on text mode. It will only be set if the recovery boot is triggered from fastboot, or
156 // with 'adb reboot recovery'. Note that this applies to all build variants. Otherwise the text
157 // mode will be turned on automatically on debuggable builds, even without a swipe.
158 std::string cmdline;
159 if (android::base::ReadFileToString("/proc/cmdline", &cmdline)) {
160 is_bootreason_recovery_ui_ = cmdline.find("bootreason=recovery_ui") != std::string::npos;
161 } else {
162 // Non-fatal, and won't affect Init() result.
163 PLOG(WARNING) << "Failed to read /proc/cmdline";
164 }
165 }
166
167 if (!InitScreensaver()) {
168 LOG(INFO) << "Screensaver disabled";
169 }
170
171 pthread_create(&input_thread_, nullptr, InputThreadLoop, nullptr);
172 return true;
173 }
174
OnTouchDetected(int dx,int dy)175 void RecoveryUI::OnTouchDetected(int dx, int dy) {
176 enum SwipeDirection { UP, DOWN, RIGHT, LEFT } direction;
177
178 // We only consider a valid swipe if:
179 // - the delta along one axis is below kTouchLowThreshold;
180 // - and the delta along the other axis is beyond kTouchHighThreshold.
181 if (abs(dy) < kTouchLowThreshold && abs(dx) > kTouchHighThreshold) {
182 direction = dx < 0 ? SwipeDirection::LEFT : SwipeDirection::RIGHT;
183 } else if (abs(dx) < kTouchLowThreshold && abs(dy) > kTouchHighThreshold) {
184 direction = dy < 0 ? SwipeDirection::UP : SwipeDirection::DOWN;
185 } else {
186 LOG(DEBUG) << "Ignored " << dx << " " << dy << " (low: " << kTouchLowThreshold
187 << ", high: " << kTouchHighThreshold << ")";
188 return;
189 }
190
191 // Allow turning on text mode with any swipe, if bootloader has set a bootreason of recovery_ui.
192 if (is_bootreason_recovery_ui_ && !IsTextVisible()) {
193 ShowText(true);
194 return;
195 }
196
197 LOG(DEBUG) << "Swipe direction=" << direction;
198 switch (direction) {
199 case SwipeDirection::UP:
200 ProcessKey(KEY_UP, 1); // press up key
201 ProcessKey(KEY_UP, 0); // and release it
202 break;
203
204 case SwipeDirection::DOWN:
205 ProcessKey(KEY_DOWN, 1); // press down key
206 ProcessKey(KEY_DOWN, 0); // and release it
207 break;
208
209 case SwipeDirection::LEFT:
210 case SwipeDirection::RIGHT:
211 ProcessKey(KEY_POWER, 1); // press power key
212 ProcessKey(KEY_POWER, 0); // and release it
213 break;
214 };
215 }
216
OnInputEvent(int fd,uint32_t epevents)217 int RecoveryUI::OnInputEvent(int fd, uint32_t epevents) {
218 struct input_event ev;
219 if (ev_get_input(fd, epevents, &ev) == -1) {
220 return -1;
221 }
222
223 // Touch inputs handling.
224 //
225 // We handle the touch inputs by tracking the position changes between initial contacting and
226 // upon lifting. touch_start_X/Y record the initial positions, with touch_finger_down set. Upon
227 // detecting the lift, we unset touch_finger_down and detect a swipe based on position changes.
228 //
229 // Per the doc Multi-touch Protocol at below, there are two protocols.
230 // https://www.kernel.org/doc/Documentation/input/multi-touch-protocol.txt
231 //
232 // The main difference between the stateless type A protocol and the stateful type B slot protocol
233 // lies in the usage of identifiable contacts to reduce the amount of data sent to userspace. The
234 // slot protocol (i.e. type B) sends ABS_MT_TRACKING_ID with a unique id on initial contact, and
235 // sends ABS_MT_TRACKING_ID -1 upon lifting the contact. Protocol A doesn't send
236 // ABS_MT_TRACKING_ID -1 on lifting, but the driver may additionally report BTN_TOUCH event.
237 //
238 // For protocol A, we rely on BTN_TOUCH to recognize lifting, while for protocol B we look for
239 // ABS_MT_TRACKING_ID being -1.
240 //
241 // Touch input events will only be available if touch_screen_allowed_ is set.
242
243 if (ev.type == EV_SYN) {
244 if (touch_screen_allowed_ && ev.code == SYN_REPORT) {
245 // There might be multiple SYN_REPORT events. We should only detect a swipe after lifting the
246 // contact.
247 if (touch_finger_down_ && !touch_swiping_) {
248 touch_start_X_ = touch_X_;
249 touch_start_Y_ = touch_Y_;
250 touch_swiping_ = true;
251 } else if (!touch_finger_down_ && touch_swiping_) {
252 touch_swiping_ = false;
253 OnTouchDetected(touch_X_ - touch_start_X_, touch_Y_ - touch_start_Y_);
254 }
255 }
256 return 0;
257 }
258
259 if (ev.type == EV_REL) {
260 if (ev.code == REL_Y) {
261 // accumulate the up or down motion reported by
262 // the trackball. When it exceeds a threshold
263 // (positive or negative), fake an up/down
264 // key event.
265 rel_sum += ev.value;
266 if (rel_sum > 3) {
267 ProcessKey(KEY_DOWN, 1); // press down key
268 ProcessKey(KEY_DOWN, 0); // and release it
269 rel_sum = 0;
270 } else if (rel_sum < -3) {
271 ProcessKey(KEY_UP, 1); // press up key
272 ProcessKey(KEY_UP, 0); // and release it
273 rel_sum = 0;
274 }
275 }
276 } else {
277 rel_sum = 0;
278 }
279
280 if (touch_screen_allowed_ && ev.type == EV_ABS) {
281 if (ev.code == ABS_MT_SLOT) {
282 touch_slot_ = ev.value;
283 }
284 // Ignore other fingers.
285 if (touch_slot_ > 0) return 0;
286
287 switch (ev.code) {
288 case ABS_MT_POSITION_X:
289 touch_X_ = ev.value;
290 touch_finger_down_ = true;
291 break;
292
293 case ABS_MT_POSITION_Y:
294 touch_Y_ = ev.value;
295 touch_finger_down_ = true;
296 break;
297
298 case ABS_MT_TRACKING_ID:
299 // Protocol B: -1 marks lifting the contact.
300 if (ev.value < 0) touch_finger_down_ = false;
301 break;
302 }
303 return 0;
304 }
305
306 if (ev.type == EV_KEY && ev.code <= KEY_MAX) {
307 if (touch_screen_allowed_) {
308 if (ev.code == BTN_TOUCH) {
309 // A BTN_TOUCH with value 1 indicates the start of contact (protocol A), with 0 means
310 // lifting the contact.
311 touch_finger_down_ = (ev.value == 1);
312 }
313
314 // Intentionally ignore BTN_TOUCH and BTN_TOOL_FINGER, which would otherwise trigger
315 // additional scrolling (because in ScreenRecoveryUI::ShowFile(), we consider keys other than
316 // KEY_POWER and KEY_UP as KEY_DOWN).
317 if (ev.code == BTN_TOUCH || ev.code == BTN_TOOL_FINGER) {
318 return 0;
319 }
320 }
321
322 ProcessKey(ev.code, ev.value);
323 }
324
325 return 0;
326 }
327
328 // Process a key-up or -down event. A key is "registered" when it is
329 // pressed and then released, with no other keypresses or releases in
330 // between. Registered keys are passed to CheckKey() to see if it
331 // should trigger a visibility toggle, an immediate reboot, or be
332 // queued to be processed next time the foreground thread wants a key
333 // (eg, for the menu).
334 //
335 // We also keep track of which keys are currently down so that
336 // CheckKey can call IsKeyPressed to see what other keys are held when
337 // a key is registered.
338 //
339 // updown == 1 for key down events; 0 for key up events
ProcessKey(int key_code,int updown)340 void RecoveryUI::ProcessKey(int key_code, int updown) {
341 bool register_key = false;
342 bool long_press = false;
343 bool reboot_enabled;
344
345 pthread_mutex_lock(&key_queue_mutex);
346 key_pressed[key_code] = updown;
347 if (updown) {
348 ++key_down_count;
349 key_last_down = key_code;
350 key_long_press = false;
351 key_timer_t* info = new key_timer_t;
352 info->ui = this;
353 info->key_code = key_code;
354 info->count = key_down_count;
355 pthread_t thread;
356 pthread_create(&thread, nullptr, &RecoveryUI::time_key_helper, info);
357 pthread_detach(thread);
358 } else {
359 if (key_last_down == key_code) {
360 long_press = key_long_press;
361 register_key = true;
362 }
363 key_last_down = -1;
364 }
365 reboot_enabled = enable_reboot;
366 pthread_mutex_unlock(&key_queue_mutex);
367
368 if (register_key) {
369 switch (CheckKey(key_code, long_press)) {
370 case RecoveryUI::IGNORE:
371 break;
372
373 case RecoveryUI::TOGGLE:
374 ShowText(!IsTextVisible());
375 break;
376
377 case RecoveryUI::REBOOT:
378 if (reboot_enabled) {
379 reboot("reboot,");
380 while (true) {
381 pause();
382 }
383 }
384 break;
385
386 case RecoveryUI::ENQUEUE:
387 EnqueueKey(key_code);
388 break;
389 }
390 }
391 }
392
time_key_helper(void * cookie)393 void* RecoveryUI::time_key_helper(void* cookie) {
394 key_timer_t* info = static_cast<key_timer_t*>(cookie);
395 info->ui->time_key(info->key_code, info->count);
396 delete info;
397 return nullptr;
398 }
399
time_key(int key_code,int count)400 void RecoveryUI::time_key(int key_code, int count) {
401 usleep(750000); // 750 ms == "long"
402 bool long_press = false;
403 pthread_mutex_lock(&key_queue_mutex);
404 if (key_last_down == key_code && key_down_count == count) {
405 long_press = key_long_press = true;
406 }
407 pthread_mutex_unlock(&key_queue_mutex);
408 if (long_press) KeyLongPress(key_code);
409 }
410
EnqueueKey(int key_code)411 void RecoveryUI::EnqueueKey(int key_code) {
412 pthread_mutex_lock(&key_queue_mutex);
413 const int queue_max = sizeof(key_queue) / sizeof(key_queue[0]);
414 if (key_queue_len < queue_max) {
415 key_queue[key_queue_len++] = key_code;
416 pthread_cond_signal(&key_queue_cond);
417 }
418 pthread_mutex_unlock(&key_queue_mutex);
419 }
420
WaitKey()421 int RecoveryUI::WaitKey() {
422 pthread_mutex_lock(&key_queue_mutex);
423
424 // Time out after UI_WAIT_KEY_TIMEOUT_SEC, unless a USB cable is
425 // plugged in.
426 do {
427 struct timeval now;
428 struct timespec timeout;
429 gettimeofday(&now, nullptr);
430 timeout.tv_sec = now.tv_sec;
431 timeout.tv_nsec = now.tv_usec * 1000;
432 timeout.tv_sec += UI_WAIT_KEY_TIMEOUT_SEC;
433
434 int rc = 0;
435 while (key_queue_len == 0 && rc != ETIMEDOUT) {
436 rc = pthread_cond_timedwait(&key_queue_cond, &key_queue_mutex, &timeout);
437 }
438
439 if (screensaver_state_ != ScreensaverState::DISABLED) {
440 if (rc == ETIMEDOUT) {
441 // Lower the brightness level: NORMAL -> DIMMED; DIMMED -> OFF.
442 if (screensaver_state_ == ScreensaverState::NORMAL) {
443 if (android::base::WriteStringToFile(std::to_string(brightness_dimmed_value_),
444 brightness_file_)) {
445 LOG(INFO) << "Brightness: " << brightness_dimmed_value_ << " (" << brightness_dimmed_
446 << "%)";
447 screensaver_state_ = ScreensaverState::DIMMED;
448 }
449 } else if (screensaver_state_ == ScreensaverState::DIMMED) {
450 if (android::base::WriteStringToFile("0", brightness_file_)) {
451 LOG(INFO) << "Brightness: 0 (off)";
452 screensaver_state_ = ScreensaverState::OFF;
453 }
454 }
455 } else if (screensaver_state_ != ScreensaverState::NORMAL) {
456 // Drop the first key if it's changing from OFF to NORMAL.
457 if (screensaver_state_ == ScreensaverState::OFF) {
458 if (key_queue_len > 0) {
459 memcpy(&key_queue[0], &key_queue[1], sizeof(int) * --key_queue_len);
460 }
461 }
462
463 // Reset the brightness to normal.
464 if (android::base::WriteStringToFile(std::to_string(brightness_normal_value_),
465 brightness_file_)) {
466 screensaver_state_ = ScreensaverState::NORMAL;
467 LOG(INFO) << "Brightness: " << brightness_normal_value_ << " (" << brightness_normal_
468 << "%)";
469 }
470 }
471 }
472 } while (IsUsbConnected() && key_queue_len == 0);
473
474 int key = -1;
475 if (key_queue_len > 0) {
476 key = key_queue[0];
477 memcpy(&key_queue[0], &key_queue[1], sizeof(int) * --key_queue_len);
478 }
479 pthread_mutex_unlock(&key_queue_mutex);
480 return key;
481 }
482
IsUsbConnected()483 bool RecoveryUI::IsUsbConnected() {
484 int fd = open("/sys/class/android_usb/android0/state", O_RDONLY);
485 if (fd < 0) {
486 printf("failed to open /sys/class/android_usb/android0/state: %s\n", strerror(errno));
487 return 0;
488 }
489
490 char buf;
491 // USB is connected if android_usb state is CONNECTED or CONFIGURED.
492 int connected = (TEMP_FAILURE_RETRY(read(fd, &buf, 1)) == 1) && (buf == 'C');
493 if (close(fd) < 0) {
494 printf("failed to close /sys/class/android_usb/android0/state: %s\n", strerror(errno));
495 }
496 return connected;
497 }
498
IsKeyPressed(int key)499 bool RecoveryUI::IsKeyPressed(int key) {
500 pthread_mutex_lock(&key_queue_mutex);
501 int pressed = key_pressed[key];
502 pthread_mutex_unlock(&key_queue_mutex);
503 return pressed;
504 }
505
IsLongPress()506 bool RecoveryUI::IsLongPress() {
507 pthread_mutex_lock(&key_queue_mutex);
508 bool result = key_long_press;
509 pthread_mutex_unlock(&key_queue_mutex);
510 return result;
511 }
512
HasThreeButtons()513 bool RecoveryUI::HasThreeButtons() {
514 return has_power_key && has_up_key && has_down_key;
515 }
516
HasPowerKey() const517 bool RecoveryUI::HasPowerKey() const {
518 return has_power_key;
519 }
520
HasTouchScreen() const521 bool RecoveryUI::HasTouchScreen() const {
522 return has_touch_screen;
523 }
524
FlushKeys()525 void RecoveryUI::FlushKeys() {
526 pthread_mutex_lock(&key_queue_mutex);
527 key_queue_len = 0;
528 pthread_mutex_unlock(&key_queue_mutex);
529 }
530
CheckKey(int key,bool is_long_press)531 RecoveryUI::KeyAction RecoveryUI::CheckKey(int key, bool is_long_press) {
532 pthread_mutex_lock(&key_queue_mutex);
533 key_long_press = false;
534 pthread_mutex_unlock(&key_queue_mutex);
535
536 // If we have power and volume up keys, that chord is the signal to toggle the text display.
537 if (HasThreeButtons() || (HasPowerKey() && HasTouchScreen() && touch_screen_allowed_)) {
538 if ((key == KEY_VOLUMEUP || key == KEY_UP) && IsKeyPressed(KEY_POWER)) {
539 return TOGGLE;
540 }
541 } else {
542 // Otherwise long press of any button toggles to the text display,
543 // and there's no way to toggle back (but that's pretty useless anyway).
544 if (is_long_press && !IsTextVisible()) {
545 return TOGGLE;
546 }
547
548 // Also, for button-limited devices, a long press is translated to KEY_ENTER.
549 if (is_long_press && IsTextVisible()) {
550 EnqueueKey(KEY_ENTER);
551 return IGNORE;
552 }
553 }
554
555 // Press power seven times in a row to reboot.
556 if (key == KEY_POWER) {
557 pthread_mutex_lock(&key_queue_mutex);
558 bool reboot_enabled = enable_reboot;
559 pthread_mutex_unlock(&key_queue_mutex);
560
561 if (reboot_enabled) {
562 ++consecutive_power_keys;
563 if (consecutive_power_keys >= 7) {
564 return REBOOT;
565 }
566 }
567 } else {
568 consecutive_power_keys = 0;
569 }
570
571 last_key = key;
572 return (IsTextVisible() || screensaver_state_ == ScreensaverState::OFF) ? ENQUEUE : IGNORE;
573 }
574
KeyLongPress(int)575 void RecoveryUI::KeyLongPress(int) {
576 }
577
SetEnableReboot(bool enabled)578 void RecoveryUI::SetEnableReboot(bool enabled) {
579 pthread_mutex_lock(&key_queue_mutex);
580 enable_reboot = enabled;
581 pthread_mutex_unlock(&key_queue_mutex);
582 }
583