1 /* 2 * Copyright (C) 2010 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 "Surface" 18 #define ATRACE_TAG ATRACE_TAG_GRAPHICS 19 //#define LOG_NDEBUG 0 20 21 #include <android/native_window.h> 22 23 #include <binder/Parcel.h> 24 25 #include <utils/Log.h> 26 #include <utils/Trace.h> 27 #include <utils/NativeHandle.h> 28 29 #include <ui/Fence.h> 30 31 #include <gui/IProducerListener.h> 32 #include <gui/ISurfaceComposer.h> 33 #include <gui/SurfaceComposerClient.h> 34 #include <gui/GLConsumer.h> 35 #include <gui/Surface.h> 36 37 #include <private/gui/ComposerService.h> 38 39 namespace android { 40 41 Surface::Surface( 42 const sp<IGraphicBufferProducer>& bufferProducer, 43 bool controlledByApp) 44 : mGraphicBufferProducer(bufferProducer) 45 { 46 // Initialize the ANativeWindow function pointers. 47 ANativeWindow::setSwapInterval = hook_setSwapInterval; 48 ANativeWindow::dequeueBuffer = hook_dequeueBuffer; 49 ANativeWindow::cancelBuffer = hook_cancelBuffer; 50 ANativeWindow::queueBuffer = hook_queueBuffer; 51 ANativeWindow::query = hook_query; 52 ANativeWindow::perform = hook_perform; 53 54 ANativeWindow::dequeueBuffer_DEPRECATED = hook_dequeueBuffer_DEPRECATED; 55 ANativeWindow::cancelBuffer_DEPRECATED = hook_cancelBuffer_DEPRECATED; 56 ANativeWindow::lockBuffer_DEPRECATED = hook_lockBuffer_DEPRECATED; 57 ANativeWindow::queueBuffer_DEPRECATED = hook_queueBuffer_DEPRECATED; 58 59 const_cast<int&>(ANativeWindow::minSwapInterval) = 0; 60 const_cast<int&>(ANativeWindow::maxSwapInterval) = 1; 61 62 mReqWidth = 0; 63 mReqHeight = 0; 64 mReqFormat = 0; 65 mReqUsage = 0; 66 mTimestamp = NATIVE_WINDOW_TIMESTAMP_AUTO; 67 mCrop.clear(); 68 mScalingMode = NATIVE_WINDOW_SCALING_MODE_FREEZE; 69 mTransform = 0; 70 mStickyTransform = 0; 71 mDefaultWidth = 0; 72 mDefaultHeight = 0; 73 mUserWidth = 0; 74 mUserHeight = 0; 75 mTransformHint = 0; 76 mConsumerRunningBehind = false; 77 mConnectedToCpu = false; 78 mProducerControlledByApp = controlledByApp; 79 mSwapIntervalZero = false; 80 } 81 82 Surface::~Surface() { 83 if (mConnectedToCpu) { 84 Surface::disconnect(NATIVE_WINDOW_API_CPU); 85 } 86 } 87 88 sp<IGraphicBufferProducer> Surface::getIGraphicBufferProducer() const { 89 return mGraphicBufferProducer; 90 } 91 92 void Surface::setSidebandStream(const sp<NativeHandle>& stream) { 93 mGraphicBufferProducer->setSidebandStream(stream); 94 } 95 96 void Surface::allocateBuffers() { 97 uint32_t reqWidth = mReqWidth ? mReqWidth : mUserWidth; 98 uint32_t reqHeight = mReqHeight ? mReqHeight : mUserHeight; 99 mGraphicBufferProducer->allocateBuffers(mSwapIntervalZero, mReqWidth, 100 mReqHeight, mReqFormat, mReqUsage); 101 } 102 103 int Surface::hook_setSwapInterval(ANativeWindow* window, int interval) { 104 Surface* c = getSelf(window); 105 return c->setSwapInterval(interval); 106 } 107 108 int Surface::hook_dequeueBuffer(ANativeWindow* window, 109 ANativeWindowBuffer** buffer, int* fenceFd) { 110 Surface* c = getSelf(window); 111 return c->dequeueBuffer(buffer, fenceFd); 112 } 113 114 int Surface::hook_cancelBuffer(ANativeWindow* window, 115 ANativeWindowBuffer* buffer, int fenceFd) { 116 Surface* c = getSelf(window); 117 return c->cancelBuffer(buffer, fenceFd); 118 } 119 120 int Surface::hook_queueBuffer(ANativeWindow* window, 121 ANativeWindowBuffer* buffer, int fenceFd) { 122 Surface* c = getSelf(window); 123 return c->queueBuffer(buffer, fenceFd); 124 } 125 126 int Surface::hook_dequeueBuffer_DEPRECATED(ANativeWindow* window, 127 ANativeWindowBuffer** buffer) { 128 Surface* c = getSelf(window); 129 ANativeWindowBuffer* buf; 130 int fenceFd = -1; 131 int result = c->dequeueBuffer(&buf, &fenceFd); 132 sp<Fence> fence(new Fence(fenceFd)); 133 int waitResult = fence->waitForever("dequeueBuffer_DEPRECATED"); 134 if (waitResult != OK) { 135 ALOGE("dequeueBuffer_DEPRECATED: Fence::wait returned an error: %d", 136 waitResult); 137 c->cancelBuffer(buf, -1); 138 return waitResult; 139 } 140 *buffer = buf; 141 return result; 142 } 143 144 int Surface::hook_cancelBuffer_DEPRECATED(ANativeWindow* window, 145 ANativeWindowBuffer* buffer) { 146 Surface* c = getSelf(window); 147 return c->cancelBuffer(buffer, -1); 148 } 149 150 int Surface::hook_lockBuffer_DEPRECATED(ANativeWindow* window, 151 ANativeWindowBuffer* buffer) { 152 Surface* c = getSelf(window); 153 return c->lockBuffer_DEPRECATED(buffer); 154 } 155 156 int Surface::hook_queueBuffer_DEPRECATED(ANativeWindow* window, 157 ANativeWindowBuffer* buffer) { 158 Surface* c = getSelf(window); 159 return c->queueBuffer(buffer, -1); 160 } 161 162 int Surface::hook_query(const ANativeWindow* window, 163 int what, int* value) { 164 const Surface* c = getSelf(window); 165 return c->query(what, value); 166 } 167 168 int Surface::hook_perform(ANativeWindow* window, int operation, ...) { 169 va_list args; 170 va_start(args, operation); 171 Surface* c = getSelf(window); 172 return c->perform(operation, args); 173 } 174 175 int Surface::setSwapInterval(int interval) { 176 ATRACE_CALL(); 177 // EGL specification states: 178 // interval is silently clamped to minimum and maximum implementation 179 // dependent values before being stored. 180 181 if (interval < minSwapInterval) 182 interval = minSwapInterval; 183 184 if (interval > maxSwapInterval) 185 interval = maxSwapInterval; 186 187 mSwapIntervalZero = (interval == 0); 188 189 return NO_ERROR; 190 } 191 192 int Surface::dequeueBuffer(android_native_buffer_t** buffer, int* fenceFd) { 193 ATRACE_CALL(); 194 ALOGV("Surface::dequeueBuffer"); 195 196 int reqW; 197 int reqH; 198 bool swapIntervalZero; 199 uint32_t reqFormat; 200 uint32_t reqUsage; 201 202 { 203 Mutex::Autolock lock(mMutex); 204 205 reqW = mReqWidth ? mReqWidth : mUserWidth; 206 reqH = mReqHeight ? mReqHeight : mUserHeight; 207 208 swapIntervalZero = mSwapIntervalZero; 209 reqFormat = mReqFormat; 210 reqUsage = mReqUsage; 211 } // Drop the lock so that we can still touch the Surface while blocking in IGBP::dequeueBuffer 212 213 int buf = -1; 214 sp<Fence> fence; 215 status_t result = mGraphicBufferProducer->dequeueBuffer(&buf, &fence, swapIntervalZero, 216 reqW, reqH, reqFormat, reqUsage); 217 218 if (result < 0) { 219 ALOGV("dequeueBuffer: IGraphicBufferProducer::dequeueBuffer(%d, %d, %d, %d, %d)" 220 "failed: %d", swapIntervalZero, reqW, reqH, reqFormat, reqUsage, 221 result); 222 return result; 223 } 224 225 Mutex::Autolock lock(mMutex); 226 227 sp<GraphicBuffer>& gbuf(mSlots[buf].buffer); 228 229 // this should never happen 230 ALOGE_IF(fence == NULL, "Surface::dequeueBuffer: received null Fence! buf=%d", buf); 231 232 if (result & IGraphicBufferProducer::RELEASE_ALL_BUFFERS) { 233 freeAllBuffers(); 234 } 235 236 if ((result & IGraphicBufferProducer::BUFFER_NEEDS_REALLOCATION) || gbuf == 0) { 237 result = mGraphicBufferProducer->requestBuffer(buf, &gbuf); 238 if (result != NO_ERROR) { 239 ALOGE("dequeueBuffer: IGraphicBufferProducer::requestBuffer failed: %d", result); 240 mGraphicBufferProducer->cancelBuffer(buf, fence); 241 return result; 242 } 243 } 244 245 if (fence->isValid()) { 246 *fenceFd = fence->dup(); 247 if (*fenceFd == -1) { 248 ALOGE("dequeueBuffer: error duping fence: %d", errno); 249 // dup() should never fail; something is badly wrong. Soldier on 250 // and hope for the best; the worst that should happen is some 251 // visible corruption that lasts until the next frame. 252 } 253 } else { 254 *fenceFd = -1; 255 } 256 257 *buffer = gbuf.get(); 258 return OK; 259 } 260 261 int Surface::cancelBuffer(android_native_buffer_t* buffer, 262 int fenceFd) { 263 ATRACE_CALL(); 264 ALOGV("Surface::cancelBuffer"); 265 Mutex::Autolock lock(mMutex); 266 int i = getSlotFromBufferLocked(buffer); 267 if (i < 0) { 268 return i; 269 } 270 sp<Fence> fence(fenceFd >= 0 ? new Fence(fenceFd) : Fence::NO_FENCE); 271 mGraphicBufferProducer->cancelBuffer(i, fence); 272 return OK; 273 } 274 275 int Surface::getSlotFromBufferLocked( 276 android_native_buffer_t* buffer) const { 277 bool dumpedState = false; 278 for (int i = 0; i < NUM_BUFFER_SLOTS; i++) { 279 if (mSlots[i].buffer != NULL && 280 mSlots[i].buffer->handle == buffer->handle) { 281 return i; 282 } 283 } 284 ALOGE("getSlotFromBufferLocked: unknown buffer: %p", buffer->handle); 285 return BAD_VALUE; 286 } 287 288 int Surface::lockBuffer_DEPRECATED(android_native_buffer_t* buffer __attribute__((unused))) { 289 ALOGV("Surface::lockBuffer"); 290 Mutex::Autolock lock(mMutex); 291 return OK; 292 } 293 294 int Surface::queueBuffer(android_native_buffer_t* buffer, int fenceFd) { 295 ATRACE_CALL(); 296 ALOGV("Surface::queueBuffer"); 297 Mutex::Autolock lock(mMutex); 298 int64_t timestamp; 299 bool isAutoTimestamp = false; 300 if (mTimestamp == NATIVE_WINDOW_TIMESTAMP_AUTO) { 301 timestamp = systemTime(SYSTEM_TIME_MONOTONIC); 302 isAutoTimestamp = true; 303 ALOGV("Surface::queueBuffer making up timestamp: %.2f ms", 304 timestamp / 1000000.f); 305 } else { 306 timestamp = mTimestamp; 307 } 308 int i = getSlotFromBufferLocked(buffer); 309 if (i < 0) { 310 return i; 311 } 312 313 314 // Make sure the crop rectangle is entirely inside the buffer. 315 Rect crop; 316 mCrop.intersect(Rect(buffer->width, buffer->height), &crop); 317 318 sp<Fence> fence(fenceFd >= 0 ? new Fence(fenceFd) : Fence::NO_FENCE); 319 IGraphicBufferProducer::QueueBufferOutput output; 320 IGraphicBufferProducer::QueueBufferInput input(timestamp, isAutoTimestamp, 321 crop, mScalingMode, mTransform ^ mStickyTransform, mSwapIntervalZero, 322 fence, mStickyTransform); 323 status_t err = mGraphicBufferProducer->queueBuffer(i, input, &output); 324 if (err != OK) { 325 ALOGE("queueBuffer: error queuing buffer to SurfaceTexture, %d", err); 326 } 327 uint32_t numPendingBuffers = 0; 328 uint32_t hint = 0; 329 output.deflate(&mDefaultWidth, &mDefaultHeight, &hint, 330 &numPendingBuffers); 331 332 // Disable transform hint if sticky transform is set. 333 if (mStickyTransform == 0) { 334 mTransformHint = hint; 335 } 336 337 mConsumerRunningBehind = (numPendingBuffers >= 2); 338 339 return err; 340 } 341 342 int Surface::query(int what, int* value) const { 343 ATRACE_CALL(); 344 ALOGV("Surface::query"); 345 { // scope for the lock 346 Mutex::Autolock lock(mMutex); 347 switch (what) { 348 case NATIVE_WINDOW_FORMAT: 349 if (mReqFormat) { 350 *value = mReqFormat; 351 return NO_ERROR; 352 } 353 break; 354 case NATIVE_WINDOW_QUEUES_TO_WINDOW_COMPOSER: { 355 sp<ISurfaceComposer> composer( 356 ComposerService::getComposerService()); 357 if (composer->authenticateSurfaceTexture(mGraphicBufferProducer)) { 358 *value = 1; 359 } else { 360 *value = 0; 361 } 362 return NO_ERROR; 363 } 364 case NATIVE_WINDOW_CONCRETE_TYPE: 365 *value = NATIVE_WINDOW_SURFACE; 366 return NO_ERROR; 367 case NATIVE_WINDOW_DEFAULT_WIDTH: 368 *value = mUserWidth ? mUserWidth : mDefaultWidth; 369 return NO_ERROR; 370 case NATIVE_WINDOW_DEFAULT_HEIGHT: 371 *value = mUserHeight ? mUserHeight : mDefaultHeight; 372 return NO_ERROR; 373 case NATIVE_WINDOW_TRANSFORM_HINT: 374 *value = mTransformHint; 375 return NO_ERROR; 376 case NATIVE_WINDOW_CONSUMER_RUNNING_BEHIND: { 377 status_t err = NO_ERROR; 378 if (!mConsumerRunningBehind) { 379 *value = 0; 380 } else { 381 err = mGraphicBufferProducer->query(what, value); 382 if (err == NO_ERROR) { 383 mConsumerRunningBehind = *value; 384 } 385 } 386 return err; 387 } 388 } 389 } 390 return mGraphicBufferProducer->query(what, value); 391 } 392 393 int Surface::perform(int operation, va_list args) 394 { 395 int res = NO_ERROR; 396 switch (operation) { 397 case NATIVE_WINDOW_CONNECT: 398 // deprecated. must return NO_ERROR. 399 break; 400 case NATIVE_WINDOW_DISCONNECT: 401 // deprecated. must return NO_ERROR. 402 break; 403 case NATIVE_WINDOW_SET_USAGE: 404 res = dispatchSetUsage(args); 405 break; 406 case NATIVE_WINDOW_SET_CROP: 407 res = dispatchSetCrop(args); 408 break; 409 case NATIVE_WINDOW_SET_BUFFER_COUNT: 410 res = dispatchSetBufferCount(args); 411 break; 412 case NATIVE_WINDOW_SET_BUFFERS_GEOMETRY: 413 res = dispatchSetBuffersGeometry(args); 414 break; 415 case NATIVE_WINDOW_SET_BUFFERS_TRANSFORM: 416 res = dispatchSetBuffersTransform(args); 417 break; 418 case NATIVE_WINDOW_SET_BUFFERS_STICKY_TRANSFORM: 419 res = dispatchSetBuffersStickyTransform(args); 420 break; 421 case NATIVE_WINDOW_SET_BUFFERS_TIMESTAMP: 422 res = dispatchSetBuffersTimestamp(args); 423 break; 424 case NATIVE_WINDOW_SET_BUFFERS_DIMENSIONS: 425 res = dispatchSetBuffersDimensions(args); 426 break; 427 case NATIVE_WINDOW_SET_BUFFERS_USER_DIMENSIONS: 428 res = dispatchSetBuffersUserDimensions(args); 429 break; 430 case NATIVE_WINDOW_SET_BUFFERS_FORMAT: 431 res = dispatchSetBuffersFormat(args); 432 break; 433 case NATIVE_WINDOW_LOCK: 434 res = dispatchLock(args); 435 break; 436 case NATIVE_WINDOW_UNLOCK_AND_POST: 437 res = dispatchUnlockAndPost(args); 438 break; 439 case NATIVE_WINDOW_SET_SCALING_MODE: 440 res = dispatchSetScalingMode(args); 441 break; 442 case NATIVE_WINDOW_API_CONNECT: 443 res = dispatchConnect(args); 444 break; 445 case NATIVE_WINDOW_API_DISCONNECT: 446 res = dispatchDisconnect(args); 447 break; 448 case NATIVE_WINDOW_SET_SIDEBAND_STREAM: 449 res = dispatchSetSidebandStream(args); 450 break; 451 default: 452 res = NAME_NOT_FOUND; 453 break; 454 } 455 return res; 456 } 457 458 int Surface::dispatchConnect(va_list args) { 459 int api = va_arg(args, int); 460 return connect(api); 461 } 462 463 int Surface::dispatchDisconnect(va_list args) { 464 int api = va_arg(args, int); 465 return disconnect(api); 466 } 467 468 int Surface::dispatchSetUsage(va_list args) { 469 int usage = va_arg(args, int); 470 return setUsage(usage); 471 } 472 473 int Surface::dispatchSetCrop(va_list args) { 474 android_native_rect_t const* rect = va_arg(args, android_native_rect_t*); 475 return setCrop(reinterpret_cast<Rect const*>(rect)); 476 } 477 478 int Surface::dispatchSetBufferCount(va_list args) { 479 size_t bufferCount = va_arg(args, size_t); 480 return setBufferCount(bufferCount); 481 } 482 483 int Surface::dispatchSetBuffersGeometry(va_list args) { 484 int w = va_arg(args, int); 485 int h = va_arg(args, int); 486 int f = va_arg(args, int); 487 int err = setBuffersDimensions(w, h); 488 if (err != 0) { 489 return err; 490 } 491 return setBuffersFormat(f); 492 } 493 494 int Surface::dispatchSetBuffersDimensions(va_list args) { 495 int w = va_arg(args, int); 496 int h = va_arg(args, int); 497 return setBuffersDimensions(w, h); 498 } 499 500 int Surface::dispatchSetBuffersUserDimensions(va_list args) { 501 int w = va_arg(args, int); 502 int h = va_arg(args, int); 503 return setBuffersUserDimensions(w, h); 504 } 505 506 int Surface::dispatchSetBuffersFormat(va_list args) { 507 int f = va_arg(args, int); 508 return setBuffersFormat(f); 509 } 510 511 int Surface::dispatchSetScalingMode(va_list args) { 512 int m = va_arg(args, int); 513 return setScalingMode(m); 514 } 515 516 int Surface::dispatchSetBuffersTransform(va_list args) { 517 int transform = va_arg(args, int); 518 return setBuffersTransform(transform); 519 } 520 521 int Surface::dispatchSetBuffersStickyTransform(va_list args) { 522 int transform = va_arg(args, int); 523 return setBuffersStickyTransform(transform); 524 } 525 526 int Surface::dispatchSetBuffersTimestamp(va_list args) { 527 int64_t timestamp = va_arg(args, int64_t); 528 return setBuffersTimestamp(timestamp); 529 } 530 531 int Surface::dispatchLock(va_list args) { 532 ANativeWindow_Buffer* outBuffer = va_arg(args, ANativeWindow_Buffer*); 533 ARect* inOutDirtyBounds = va_arg(args, ARect*); 534 return lock(outBuffer, inOutDirtyBounds); 535 } 536 537 int Surface::dispatchUnlockAndPost(va_list args __attribute__((unused))) { 538 return unlockAndPost(); 539 } 540 541 int Surface::dispatchSetSidebandStream(va_list args) { 542 native_handle_t* sH = va_arg(args, native_handle_t*); 543 sp<NativeHandle> sidebandHandle = NativeHandle::create(sH, false); 544 setSidebandStream(sidebandHandle); 545 return OK; 546 } 547 548 int Surface::connect(int api) { 549 ATRACE_CALL(); 550 ALOGV("Surface::connect"); 551 static sp<IProducerListener> listener = new DummyProducerListener(); 552 Mutex::Autolock lock(mMutex); 553 IGraphicBufferProducer::QueueBufferOutput output; 554 int err = mGraphicBufferProducer->connect(listener, api, mProducerControlledByApp, &output); 555 if (err == NO_ERROR) { 556 uint32_t numPendingBuffers = 0; 557 uint32_t hint = 0; 558 output.deflate(&mDefaultWidth, &mDefaultHeight, &hint, 559 &numPendingBuffers); 560 561 // Disable transform hint if sticky transform is set. 562 if (mStickyTransform == 0) { 563 mTransformHint = hint; 564 } 565 566 mConsumerRunningBehind = (numPendingBuffers >= 2); 567 } 568 if (!err && api == NATIVE_WINDOW_API_CPU) { 569 mConnectedToCpu = true; 570 } 571 return err; 572 } 573 574 575 int Surface::disconnect(int api) { 576 ATRACE_CALL(); 577 ALOGV("Surface::disconnect"); 578 Mutex::Autolock lock(mMutex); 579 freeAllBuffers(); 580 int err = mGraphicBufferProducer->disconnect(api); 581 if (!err) { 582 mReqFormat = 0; 583 mReqWidth = 0; 584 mReqHeight = 0; 585 mReqUsage = 0; 586 mCrop.clear(); 587 mScalingMode = NATIVE_WINDOW_SCALING_MODE_FREEZE; 588 mTransform = 0; 589 mStickyTransform = 0; 590 591 if (api == NATIVE_WINDOW_API_CPU) { 592 mConnectedToCpu = false; 593 } 594 } 595 return err; 596 } 597 598 int Surface::setUsage(uint32_t reqUsage) 599 { 600 ALOGV("Surface::setUsage"); 601 Mutex::Autolock lock(mMutex); 602 mReqUsage = reqUsage; 603 return OK; 604 } 605 606 int Surface::setCrop(Rect const* rect) 607 { 608 ATRACE_CALL(); 609 610 Rect realRect; 611 if (rect == NULL || rect->isEmpty()) { 612 realRect.clear(); 613 } else { 614 realRect = *rect; 615 } 616 617 ALOGV("Surface::setCrop rect=[%d %d %d %d]", 618 realRect.left, realRect.top, realRect.right, realRect.bottom); 619 620 Mutex::Autolock lock(mMutex); 621 mCrop = realRect; 622 return NO_ERROR; 623 } 624 625 int Surface::setBufferCount(int bufferCount) 626 { 627 ATRACE_CALL(); 628 ALOGV("Surface::setBufferCount"); 629 Mutex::Autolock lock(mMutex); 630 631 status_t err = mGraphicBufferProducer->setBufferCount(bufferCount); 632 ALOGE_IF(err, "IGraphicBufferProducer::setBufferCount(%d) returned %s", 633 bufferCount, strerror(-err)); 634 635 if (err == NO_ERROR) { 636 freeAllBuffers(); 637 } 638 639 return err; 640 } 641 642 int Surface::setBuffersDimensions(int w, int h) 643 { 644 ATRACE_CALL(); 645 ALOGV("Surface::setBuffersDimensions"); 646 647 if (w<0 || h<0) 648 return BAD_VALUE; 649 650 if ((w && !h) || (!w && h)) 651 return BAD_VALUE; 652 653 Mutex::Autolock lock(mMutex); 654 mReqWidth = w; 655 mReqHeight = h; 656 return NO_ERROR; 657 } 658 659 int Surface::setBuffersUserDimensions(int w, int h) 660 { 661 ATRACE_CALL(); 662 ALOGV("Surface::setBuffersUserDimensions"); 663 664 if (w<0 || h<0) 665 return BAD_VALUE; 666 667 if ((w && !h) || (!w && h)) 668 return BAD_VALUE; 669 670 Mutex::Autolock lock(mMutex); 671 mUserWidth = w; 672 mUserHeight = h; 673 return NO_ERROR; 674 } 675 676 int Surface::setBuffersFormat(int format) 677 { 678 ALOGV("Surface::setBuffersFormat"); 679 680 if (format<0) 681 return BAD_VALUE; 682 683 Mutex::Autolock lock(mMutex); 684 mReqFormat = format; 685 return NO_ERROR; 686 } 687 688 int Surface::setScalingMode(int mode) 689 { 690 ATRACE_CALL(); 691 ALOGV("Surface::setScalingMode(%d)", mode); 692 693 switch (mode) { 694 case NATIVE_WINDOW_SCALING_MODE_FREEZE: 695 case NATIVE_WINDOW_SCALING_MODE_SCALE_TO_WINDOW: 696 case NATIVE_WINDOW_SCALING_MODE_SCALE_CROP: 697 break; 698 default: 699 ALOGE("unknown scaling mode: %d", mode); 700 return BAD_VALUE; 701 } 702 703 Mutex::Autolock lock(mMutex); 704 mScalingMode = mode; 705 return NO_ERROR; 706 } 707 708 int Surface::setBuffersTransform(int transform) 709 { 710 ATRACE_CALL(); 711 ALOGV("Surface::setBuffersTransform"); 712 Mutex::Autolock lock(mMutex); 713 mTransform = transform; 714 return NO_ERROR; 715 } 716 717 int Surface::setBuffersStickyTransform(int transform) 718 { 719 ATRACE_CALL(); 720 ALOGV("Surface::setBuffersStickyTransform"); 721 Mutex::Autolock lock(mMutex); 722 mStickyTransform = transform; 723 return NO_ERROR; 724 } 725 726 int Surface::setBuffersTimestamp(int64_t timestamp) 727 { 728 ALOGV("Surface::setBuffersTimestamp"); 729 Mutex::Autolock lock(mMutex); 730 mTimestamp = timestamp; 731 return NO_ERROR; 732 } 733 734 void Surface::freeAllBuffers() { 735 for (int i = 0; i < NUM_BUFFER_SLOTS; i++) { 736 mSlots[i].buffer = 0; 737 } 738 } 739 740 // ---------------------------------------------------------------------- 741 // the lock/unlock APIs must be used from the same thread 742 743 static status_t copyBlt( 744 const sp<GraphicBuffer>& dst, 745 const sp<GraphicBuffer>& src, 746 const Region& reg) 747 { 748 // src and dst with, height and format must be identical. no verification 749 // is done here. 750 status_t err; 751 uint8_t const * src_bits = NULL; 752 err = src->lock(GRALLOC_USAGE_SW_READ_OFTEN, reg.bounds(), (void**)&src_bits); 753 ALOGE_IF(err, "error locking src buffer %s", strerror(-err)); 754 755 uint8_t* dst_bits = NULL; 756 err = dst->lock(GRALLOC_USAGE_SW_WRITE_OFTEN, reg.bounds(), (void**)&dst_bits); 757 ALOGE_IF(err, "error locking dst buffer %s", strerror(-err)); 758 759 Region::const_iterator head(reg.begin()); 760 Region::const_iterator tail(reg.end()); 761 if (head != tail && src_bits && dst_bits) { 762 const size_t bpp = bytesPerPixel(src->format); 763 const size_t dbpr = dst->stride * bpp; 764 const size_t sbpr = src->stride * bpp; 765 766 while (head != tail) { 767 const Rect& r(*head++); 768 ssize_t h = r.height(); 769 if (h <= 0) continue; 770 size_t size = r.width() * bpp; 771 uint8_t const * s = src_bits + (r.left + src->stride * r.top) * bpp; 772 uint8_t * d = dst_bits + (r.left + dst->stride * r.top) * bpp; 773 if (dbpr==sbpr && size==sbpr) { 774 size *= h; 775 h = 1; 776 } 777 do { 778 memcpy(d, s, size); 779 d += dbpr; 780 s += sbpr; 781 } while (--h > 0); 782 } 783 } 784 785 if (src_bits) 786 src->unlock(); 787 788 if (dst_bits) 789 dst->unlock(); 790 791 return err; 792 } 793 794 // ---------------------------------------------------------------------------- 795 796 status_t Surface::lock( 797 ANativeWindow_Buffer* outBuffer, ARect* inOutDirtyBounds) 798 { 799 if (mLockedBuffer != 0) { 800 ALOGE("Surface::lock failed, already locked"); 801 return INVALID_OPERATION; 802 } 803 804 if (!mConnectedToCpu) { 805 int err = Surface::connect(NATIVE_WINDOW_API_CPU); 806 if (err) { 807 return err; 808 } 809 // we're intending to do software rendering from this point 810 setUsage(GRALLOC_USAGE_SW_READ_OFTEN | GRALLOC_USAGE_SW_WRITE_OFTEN); 811 } 812 813 ANativeWindowBuffer* out; 814 int fenceFd = -1; 815 status_t err = dequeueBuffer(&out, &fenceFd); 816 ALOGE_IF(err, "dequeueBuffer failed (%s)", strerror(-err)); 817 if (err == NO_ERROR) { 818 sp<GraphicBuffer> backBuffer(GraphicBuffer::getSelf(out)); 819 const Rect bounds(backBuffer->width, backBuffer->height); 820 821 Region newDirtyRegion; 822 if (inOutDirtyBounds) { 823 newDirtyRegion.set(static_cast<Rect const&>(*inOutDirtyBounds)); 824 newDirtyRegion.andSelf(bounds); 825 } else { 826 newDirtyRegion.set(bounds); 827 } 828 829 // figure out if we can copy the frontbuffer back 830 const sp<GraphicBuffer>& frontBuffer(mPostedBuffer); 831 const bool canCopyBack = (frontBuffer != 0 && 832 backBuffer->width == frontBuffer->width && 833 backBuffer->height == frontBuffer->height && 834 backBuffer->format == frontBuffer->format); 835 836 if (canCopyBack) { 837 // copy the area that is invalid and not repainted this round 838 const Region copyback(mDirtyRegion.subtract(newDirtyRegion)); 839 if (!copyback.isEmpty()) 840 copyBlt(backBuffer, frontBuffer, copyback); 841 } else { 842 // if we can't copy-back anything, modify the user's dirty 843 // region to make sure they redraw the whole buffer 844 newDirtyRegion.set(bounds); 845 mDirtyRegion.clear(); 846 Mutex::Autolock lock(mMutex); 847 for (size_t i=0 ; i<NUM_BUFFER_SLOTS ; i++) { 848 mSlots[i].dirtyRegion.clear(); 849 } 850 } 851 852 853 { // scope for the lock 854 Mutex::Autolock lock(mMutex); 855 int backBufferSlot(getSlotFromBufferLocked(backBuffer.get())); 856 if (backBufferSlot >= 0) { 857 Region& dirtyRegion(mSlots[backBufferSlot].dirtyRegion); 858 mDirtyRegion.subtract(dirtyRegion); 859 dirtyRegion = newDirtyRegion; 860 } 861 } 862 863 mDirtyRegion.orSelf(newDirtyRegion); 864 if (inOutDirtyBounds) { 865 *inOutDirtyBounds = newDirtyRegion.getBounds(); 866 } 867 868 void* vaddr; 869 status_t res = backBuffer->lockAsync( 870 GRALLOC_USAGE_SW_READ_OFTEN | GRALLOC_USAGE_SW_WRITE_OFTEN, 871 newDirtyRegion.bounds(), &vaddr, fenceFd); 872 873 ALOGW_IF(res, "failed locking buffer (handle = %p)", 874 backBuffer->handle); 875 876 if (res != 0) { 877 err = INVALID_OPERATION; 878 } else { 879 mLockedBuffer = backBuffer; 880 outBuffer->width = backBuffer->width; 881 outBuffer->height = backBuffer->height; 882 outBuffer->stride = backBuffer->stride; 883 outBuffer->format = backBuffer->format; 884 outBuffer->bits = vaddr; 885 } 886 } 887 return err; 888 } 889 890 status_t Surface::unlockAndPost() 891 { 892 if (mLockedBuffer == 0) { 893 ALOGE("Surface::unlockAndPost failed, no locked buffer"); 894 return INVALID_OPERATION; 895 } 896 897 int fd = -1; 898 status_t err = mLockedBuffer->unlockAsync(&fd); 899 ALOGE_IF(err, "failed unlocking buffer (%p)", mLockedBuffer->handle); 900 901 err = queueBuffer(mLockedBuffer.get(), fd); 902 ALOGE_IF(err, "queueBuffer (handle=%p) failed (%s)", 903 mLockedBuffer->handle, strerror(-err)); 904 905 mPostedBuffer = mLockedBuffer; 906 mLockedBuffer = 0; 907 return err; 908 } 909 910 }; // namespace android 911