1 /*
2 * Copyright (C) 2007 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 "GraphicBuffer"
18
19 #include <ui/GraphicBuffer.h>
20
21 #include <cutils/atomic.h>
22
23 #include <grallocusage/GrallocUsageConversion.h>
24
25 #include <ui/DetachedBufferHandle.h>
26 #include <ui/Gralloc2.h>
27 #include <ui/GraphicBufferAllocator.h>
28 #include <ui/GraphicBufferMapper.h>
29
30 namespace android {
31
32 // ===========================================================================
33 // Buffer and implementation of ANativeWindowBuffer
34 // ===========================================================================
35
getUniqueId()36 static uint64_t getUniqueId() {
37 static volatile int32_t nextId = 0;
38 uint64_t id = static_cast<uint64_t>(getpid()) << 32;
39 id |= static_cast<uint32_t>(android_atomic_inc(&nextId));
40 return id;
41 }
42
from(ANativeWindowBuffer * anwb)43 sp<GraphicBuffer> GraphicBuffer::from(ANativeWindowBuffer* anwb) {
44 return static_cast<GraphicBuffer *>(anwb);
45 }
46
GraphicBuffer()47 GraphicBuffer::GraphicBuffer()
48 : BASE(), mOwner(ownData), mBufferMapper(GraphicBufferMapper::get()),
49 mInitCheck(NO_ERROR), mId(getUniqueId()), mGenerationNumber(0)
50 {
51 width =
52 height =
53 stride =
54 format =
55 usage_deprecated = 0;
56 usage = 0;
57 layerCount = 0;
58 handle = NULL;
59 }
60
61 // deprecated
GraphicBuffer(uint32_t inWidth,uint32_t inHeight,PixelFormat inFormat,uint32_t inUsage,std::string requestorName)62 GraphicBuffer::GraphicBuffer(uint32_t inWidth, uint32_t inHeight,
63 PixelFormat inFormat, uint32_t inUsage, std::string requestorName)
64 : GraphicBuffer(inWidth, inHeight, inFormat, 1, static_cast<uint64_t>(inUsage), requestorName)
65 {
66 }
67
GraphicBuffer(uint32_t inWidth,uint32_t inHeight,PixelFormat inFormat,uint32_t inLayerCount,uint64_t usage,std::string requestorName)68 GraphicBuffer::GraphicBuffer(uint32_t inWidth, uint32_t inHeight,
69 PixelFormat inFormat, uint32_t inLayerCount, uint64_t usage, std::string requestorName)
70 : GraphicBuffer()
71 {
72 mInitCheck = initWithSize(inWidth, inHeight, inFormat, inLayerCount,
73 usage, std::move(requestorName));
74 }
75
76 // deprecated
GraphicBuffer(uint32_t inWidth,uint32_t inHeight,PixelFormat inFormat,uint32_t inLayerCount,uint32_t inUsage,uint32_t inStride,native_handle_t * inHandle,bool keepOwnership)77 GraphicBuffer::GraphicBuffer(uint32_t inWidth, uint32_t inHeight,
78 PixelFormat inFormat, uint32_t inLayerCount, uint32_t inUsage,
79 uint32_t inStride, native_handle_t* inHandle, bool keepOwnership)
80 : GraphicBuffer(inHandle, keepOwnership ? TAKE_HANDLE : WRAP_HANDLE,
81 inWidth, inHeight, inFormat, inLayerCount, static_cast<uint64_t>(inUsage),
82 inStride)
83 {
84 }
85
GraphicBuffer(const native_handle_t * handle,HandleWrapMethod method,uint32_t width,uint32_t height,PixelFormat format,uint32_t layerCount,uint64_t usage,uint32_t stride)86 GraphicBuffer::GraphicBuffer(const native_handle_t* handle,
87 HandleWrapMethod method, uint32_t width, uint32_t height,
88 PixelFormat format, uint32_t layerCount,
89 uint64_t usage,
90 uint32_t stride)
91 : GraphicBuffer()
92 {
93 mInitCheck = initWithHandle(handle, method, width, height, format,
94 layerCount, usage, stride);
95 }
96
~GraphicBuffer()97 GraphicBuffer::~GraphicBuffer()
98 {
99 if (handle) {
100 free_handle();
101 }
102 }
103
free_handle()104 void GraphicBuffer::free_handle()
105 {
106 if (mOwner == ownHandle) {
107 mBufferMapper.freeBuffer(handle);
108 } else if (mOwner == ownData) {
109 GraphicBufferAllocator& allocator(GraphicBufferAllocator::get());
110 allocator.free(handle);
111 }
112 handle = NULL;
113 }
114
initCheck() const115 status_t GraphicBuffer::initCheck() const {
116 return static_cast<status_t>(mInitCheck);
117 }
118
dumpAllocationsToSystemLog()119 void GraphicBuffer::dumpAllocationsToSystemLog()
120 {
121 GraphicBufferAllocator::dumpToSystemLog();
122 }
123
getNativeBuffer() const124 ANativeWindowBuffer* GraphicBuffer::getNativeBuffer() const
125 {
126 LOG_ALWAYS_FATAL_IF(this == NULL, "getNativeBuffer() called on NULL GraphicBuffer");
127 return static_cast<ANativeWindowBuffer*>(
128 const_cast<GraphicBuffer*>(this));
129 }
130
reallocate(uint32_t inWidth,uint32_t inHeight,PixelFormat inFormat,uint32_t inLayerCount,uint64_t inUsage)131 status_t GraphicBuffer::reallocate(uint32_t inWidth, uint32_t inHeight,
132 PixelFormat inFormat, uint32_t inLayerCount, uint64_t inUsage)
133 {
134 if (mOwner != ownData)
135 return INVALID_OPERATION;
136
137 if (handle &&
138 static_cast<int>(inWidth) == width &&
139 static_cast<int>(inHeight) == height &&
140 inFormat == format &&
141 inLayerCount == layerCount &&
142 inUsage == usage)
143 return NO_ERROR;
144
145 if (handle) {
146 GraphicBufferAllocator& allocator(GraphicBufferAllocator::get());
147 allocator.free(handle);
148 handle = 0;
149 }
150 return initWithSize(inWidth, inHeight, inFormat, inLayerCount, inUsage, "[Reallocation]");
151 }
152
needsReallocation(uint32_t inWidth,uint32_t inHeight,PixelFormat inFormat,uint32_t inLayerCount,uint64_t inUsage)153 bool GraphicBuffer::needsReallocation(uint32_t inWidth, uint32_t inHeight,
154 PixelFormat inFormat, uint32_t inLayerCount, uint64_t inUsage)
155 {
156 if (static_cast<int>(inWidth) != width) return true;
157 if (static_cast<int>(inHeight) != height) return true;
158 if (inFormat != format) return true;
159 if (inLayerCount != layerCount) return true;
160 if ((usage & inUsage) != inUsage) return true;
161 return false;
162 }
163
initWithSize(uint32_t inWidth,uint32_t inHeight,PixelFormat inFormat,uint32_t inLayerCount,uint64_t inUsage,std::string requestorName)164 status_t GraphicBuffer::initWithSize(uint32_t inWidth, uint32_t inHeight,
165 PixelFormat inFormat, uint32_t inLayerCount, uint64_t inUsage,
166 std::string requestorName)
167 {
168 GraphicBufferAllocator& allocator = GraphicBufferAllocator::get();
169 uint32_t outStride = 0;
170 status_t err = allocator.allocate(inWidth, inHeight, inFormat, inLayerCount,
171 inUsage, &handle, &outStride, mId,
172 std::move(requestorName));
173 if (err == NO_ERROR) {
174 mBufferMapper.getTransportSize(handle, &mTransportNumFds, &mTransportNumInts);
175
176 width = static_cast<int>(inWidth);
177 height = static_cast<int>(inHeight);
178 format = inFormat;
179 layerCount = inLayerCount;
180 usage = inUsage;
181 usage_deprecated = int(usage);
182 stride = static_cast<int>(outStride);
183 }
184 return err;
185 }
186
initWithHandle(const native_handle_t * handle,HandleWrapMethod method,uint32_t width,uint32_t height,PixelFormat format,uint32_t layerCount,uint64_t usage,uint32_t stride)187 status_t GraphicBuffer::initWithHandle(const native_handle_t* handle,
188 HandleWrapMethod method, uint32_t width, uint32_t height,
189 PixelFormat format, uint32_t layerCount, uint64_t usage,
190 uint32_t stride)
191 {
192 ANativeWindowBuffer::width = static_cast<int>(width);
193 ANativeWindowBuffer::height = static_cast<int>(height);
194 ANativeWindowBuffer::stride = static_cast<int>(stride);
195 ANativeWindowBuffer::format = format;
196 ANativeWindowBuffer::usage = usage;
197 ANativeWindowBuffer::usage_deprecated = int(usage);
198
199 ANativeWindowBuffer::layerCount = layerCount;
200
201 mOwner = (method == WRAP_HANDLE) ? ownNone : ownHandle;
202
203 if (method == TAKE_UNREGISTERED_HANDLE || method == CLONE_HANDLE) {
204 buffer_handle_t importedHandle;
205 status_t err = mBufferMapper.importBuffer(handle, width, height,
206 layerCount, format, usage, stride, &importedHandle);
207 if (err != NO_ERROR) {
208 initWithHandle(nullptr, WRAP_HANDLE, 0, 0, 0, 0, 0, 0);
209
210 return err;
211 }
212
213 if (method == TAKE_UNREGISTERED_HANDLE) {
214 native_handle_close(handle);
215 native_handle_delete(const_cast<native_handle_t*>(handle));
216 }
217
218 handle = importedHandle;
219 mBufferMapper.getTransportSize(handle, &mTransportNumFds, &mTransportNumInts);
220 }
221
222 ANativeWindowBuffer::handle = handle;
223
224 return NO_ERROR;
225 }
226
lock(uint32_t inUsage,void ** vaddr)227 status_t GraphicBuffer::lock(uint32_t inUsage, void** vaddr)
228 {
229 const Rect lockBounds(width, height);
230 status_t res = lock(inUsage, lockBounds, vaddr);
231 return res;
232 }
233
lock(uint32_t inUsage,const Rect & rect,void ** vaddr)234 status_t GraphicBuffer::lock(uint32_t inUsage, const Rect& rect, void** vaddr)
235 {
236 if (rect.left < 0 || rect.right > width ||
237 rect.top < 0 || rect.bottom > height) {
238 ALOGE("locking pixels (%d,%d,%d,%d) outside of buffer (w=%d, h=%d)",
239 rect.left, rect.top, rect.right, rect.bottom,
240 width, height);
241 return BAD_VALUE;
242 }
243 status_t res = getBufferMapper().lock(handle, inUsage, rect, vaddr);
244 return res;
245 }
246
lockYCbCr(uint32_t inUsage,android_ycbcr * ycbcr)247 status_t GraphicBuffer::lockYCbCr(uint32_t inUsage, android_ycbcr* ycbcr)
248 {
249 const Rect lockBounds(width, height);
250 status_t res = lockYCbCr(inUsage, lockBounds, ycbcr);
251 return res;
252 }
253
lockYCbCr(uint32_t inUsage,const Rect & rect,android_ycbcr * ycbcr)254 status_t GraphicBuffer::lockYCbCr(uint32_t inUsage, const Rect& rect,
255 android_ycbcr* ycbcr)
256 {
257 if (rect.left < 0 || rect.right > width ||
258 rect.top < 0 || rect.bottom > height) {
259 ALOGE("locking pixels (%d,%d,%d,%d) outside of buffer (w=%d, h=%d)",
260 rect.left, rect.top, rect.right, rect.bottom,
261 width, height);
262 return BAD_VALUE;
263 }
264 status_t res = getBufferMapper().lockYCbCr(handle, inUsage, rect, ycbcr);
265 return res;
266 }
267
unlock()268 status_t GraphicBuffer::unlock()
269 {
270 status_t res = getBufferMapper().unlock(handle);
271 return res;
272 }
273
lockAsync(uint32_t inUsage,void ** vaddr,int fenceFd)274 status_t GraphicBuffer::lockAsync(uint32_t inUsage, void** vaddr, int fenceFd)
275 {
276 const Rect lockBounds(width, height);
277 status_t res = lockAsync(inUsage, lockBounds, vaddr, fenceFd);
278 return res;
279 }
280
lockAsync(uint32_t inUsage,const Rect & rect,void ** vaddr,int fenceFd)281 status_t GraphicBuffer::lockAsync(uint32_t inUsage, const Rect& rect,
282 void** vaddr, int fenceFd)
283 {
284 return lockAsync(inUsage, inUsage, rect, vaddr, fenceFd);
285 }
286
lockAsync(uint64_t inProducerUsage,uint64_t inConsumerUsage,const Rect & rect,void ** vaddr,int fenceFd)287 status_t GraphicBuffer::lockAsync(uint64_t inProducerUsage,
288 uint64_t inConsumerUsage, const Rect& rect, void** vaddr, int fenceFd)
289 {
290 if (rect.left < 0 || rect.right > width ||
291 rect.top < 0 || rect.bottom > height) {
292 ALOGE("locking pixels (%d,%d,%d,%d) outside of buffer (w=%d, h=%d)",
293 rect.left, rect.top, rect.right, rect.bottom,
294 width, height);
295 return BAD_VALUE;
296 }
297 status_t res = getBufferMapper().lockAsync(handle, inProducerUsage,
298 inConsumerUsage, rect, vaddr, fenceFd);
299 return res;
300 }
301
lockAsyncYCbCr(uint32_t inUsage,android_ycbcr * ycbcr,int fenceFd)302 status_t GraphicBuffer::lockAsyncYCbCr(uint32_t inUsage, android_ycbcr* ycbcr,
303 int fenceFd)
304 {
305 const Rect lockBounds(width, height);
306 status_t res = lockAsyncYCbCr(inUsage, lockBounds, ycbcr, fenceFd);
307 return res;
308 }
309
lockAsyncYCbCr(uint32_t inUsage,const Rect & rect,android_ycbcr * ycbcr,int fenceFd)310 status_t GraphicBuffer::lockAsyncYCbCr(uint32_t inUsage, const Rect& rect,
311 android_ycbcr* ycbcr, int fenceFd)
312 {
313 if (rect.left < 0 || rect.right > width ||
314 rect.top < 0 || rect.bottom > height) {
315 ALOGE("locking pixels (%d,%d,%d,%d) outside of buffer (w=%d, h=%d)",
316 rect.left, rect.top, rect.right, rect.bottom,
317 width, height);
318 return BAD_VALUE;
319 }
320 status_t res = getBufferMapper().lockAsyncYCbCr(handle, inUsage, rect, ycbcr, fenceFd);
321 return res;
322 }
323
unlockAsync(int * fenceFd)324 status_t GraphicBuffer::unlockAsync(int *fenceFd)
325 {
326 status_t res = getBufferMapper().unlockAsync(handle, fenceFd);
327 return res;
328 }
329
getFlattenedSize() const330 size_t GraphicBuffer::getFlattenedSize() const {
331 return static_cast<size_t>(13 + (handle ? mTransportNumInts : 0)) * sizeof(int);
332 }
333
getFdCount() const334 size_t GraphicBuffer::getFdCount() const {
335 return static_cast<size_t>(handle ? mTransportNumFds : 0);
336 }
337
flatten(void * & buffer,size_t & size,int * & fds,size_t & count) const338 status_t GraphicBuffer::flatten(void*& buffer, size_t& size, int*& fds, size_t& count) const {
339 size_t sizeNeeded = GraphicBuffer::getFlattenedSize();
340 if (size < sizeNeeded) return NO_MEMORY;
341
342 size_t fdCountNeeded = GraphicBuffer::getFdCount();
343 if (count < fdCountNeeded) return NO_MEMORY;
344
345 int32_t* buf = static_cast<int32_t*>(buffer);
346 buf[0] = 'GB01';
347 buf[1] = width;
348 buf[2] = height;
349 buf[3] = stride;
350 buf[4] = format;
351 buf[5] = static_cast<int32_t>(layerCount);
352 buf[6] = int(usage); // low 32-bits
353 buf[7] = static_cast<int32_t>(mId >> 32);
354 buf[8] = static_cast<int32_t>(mId & 0xFFFFFFFFull);
355 buf[9] = static_cast<int32_t>(mGenerationNumber);
356 buf[10] = 0;
357 buf[11] = 0;
358 buf[12] = int(usage >> 32); // high 32-bits
359
360 if (handle) {
361 buf[10] = int32_t(mTransportNumFds);
362 buf[11] = int32_t(mTransportNumInts);
363 memcpy(fds, handle->data, static_cast<size_t>(mTransportNumFds) * sizeof(int));
364 memcpy(buf + 13, handle->data + handle->numFds,
365 static_cast<size_t>(mTransportNumInts) * sizeof(int));
366 }
367
368 buffer = static_cast<void*>(static_cast<uint8_t*>(buffer) + sizeNeeded);
369 size -= sizeNeeded;
370 if (handle) {
371 fds += mTransportNumFds;
372 count -= static_cast<size_t>(mTransportNumFds);
373 }
374
375 return NO_ERROR;
376 }
377
unflatten(void const * & buffer,size_t & size,int const * & fds,size_t & count)378 status_t GraphicBuffer::unflatten(
379 void const*& buffer, size_t& size, int const*& fds, size_t& count) {
380
381 int const* buf = static_cast<int const*>(buffer);
382
383 // NOTE: it turns out that some media code generates a flattened GraphicBuffer manually!!!!!
384 // see H2BGraphicBufferProducer.cpp
385 uint32_t flattenWordCount = 0;
386 if (buf[0] == 'GB01') {
387 // new version with 64-bits usage bits
388 flattenWordCount = 13;
389 } else if (buf[0] == 'GBFR') {
390 // old version, when usage bits were 32-bits
391 flattenWordCount = 12;
392 } else {
393 return BAD_TYPE;
394 }
395
396 const size_t numFds = static_cast<size_t>(buf[10]);
397 const size_t numInts = static_cast<size_t>(buf[11]);
398
399 // Limit the maxNumber to be relatively small. The number of fds or ints
400 // should not come close to this number, and the number itself was simply
401 // chosen to be high enough to not cause issues and low enough to prevent
402 // overflow problems.
403 const size_t maxNumber = 4096;
404 if (numFds >= maxNumber || numInts >= (maxNumber - flattenWordCount)) {
405 width = height = stride = format = usage_deprecated = 0;
406 layerCount = 0;
407 usage = 0;
408 handle = NULL;
409 ALOGE("unflatten: numFds or numInts is too large: %zd, %zd", numFds, numInts);
410 return BAD_VALUE;
411 }
412
413 const size_t sizeNeeded = (flattenWordCount + numInts) * sizeof(int);
414 if (size < sizeNeeded) return NO_MEMORY;
415
416 size_t fdCountNeeded = numFds;
417 if (count < fdCountNeeded) return NO_MEMORY;
418
419 if (handle) {
420 // free previous handle if any
421 free_handle();
422 }
423
424 if (numFds || numInts) {
425 width = buf[1];
426 height = buf[2];
427 stride = buf[3];
428 format = buf[4];
429 layerCount = static_cast<uintptr_t>(buf[5]);
430 usage_deprecated = buf[6];
431 if (flattenWordCount == 13) {
432 usage = (uint64_t(buf[12]) << 32) | uint32_t(buf[6]);
433 } else {
434 usage = uint64_t(usage_deprecated);
435 }
436 native_handle* h = native_handle_create(
437 static_cast<int>(numFds), static_cast<int>(numInts));
438 if (!h) {
439 width = height = stride = format = usage_deprecated = 0;
440 layerCount = 0;
441 usage = 0;
442 handle = NULL;
443 ALOGE("unflatten: native_handle_create failed");
444 return NO_MEMORY;
445 }
446 memcpy(h->data, fds, numFds * sizeof(int));
447 memcpy(h->data + numFds, buf + flattenWordCount, numInts * sizeof(int));
448 handle = h;
449 } else {
450 width = height = stride = format = usage_deprecated = 0;
451 layerCount = 0;
452 usage = 0;
453 handle = NULL;
454 }
455
456 mId = static_cast<uint64_t>(buf[7]) << 32;
457 mId |= static_cast<uint32_t>(buf[8]);
458
459 mGenerationNumber = static_cast<uint32_t>(buf[9]);
460
461 mOwner = ownHandle;
462
463 if (handle != 0) {
464 buffer_handle_t importedHandle;
465 status_t err = mBufferMapper.importBuffer(handle, uint32_t(width), uint32_t(height),
466 uint32_t(layerCount), format, usage, uint32_t(stride), &importedHandle);
467 if (err != NO_ERROR) {
468 width = height = stride = format = usage_deprecated = 0;
469 layerCount = 0;
470 usage = 0;
471 handle = NULL;
472 ALOGE("unflatten: registerBuffer failed: %s (%d)", strerror(-err), err);
473 return err;
474 }
475
476 native_handle_close(handle);
477 native_handle_delete(const_cast<native_handle_t*>(handle));
478 handle = importedHandle;
479 mBufferMapper.getTransportSize(handle, &mTransportNumFds, &mTransportNumInts);
480 }
481
482 buffer = static_cast<void const*>(static_cast<uint8_t const*>(buffer) + sizeNeeded);
483 size -= sizeNeeded;
484 fds += numFds;
485 count -= numFds;
486
487 return NO_ERROR;
488 }
489
isDetachedBuffer() const490 bool GraphicBuffer::isDetachedBuffer() const {
491 return mDetachedBufferHandle && mDetachedBufferHandle->isValid();
492 }
493
setDetachedBufferHandle(std::unique_ptr<DetachedBufferHandle> channel)494 status_t GraphicBuffer::setDetachedBufferHandle(std::unique_ptr<DetachedBufferHandle> channel) {
495 if (isDetachedBuffer()) {
496 ALOGW("setDetachedBuffer: there is already a BufferHub channel associated with this "
497 "GraphicBuffer. Replacing the old one.");
498 }
499
500 mDetachedBufferHandle = std::move(channel);
501 return NO_ERROR;
502 }
503
takeDetachedBufferHandle()504 std::unique_ptr<DetachedBufferHandle> GraphicBuffer::takeDetachedBufferHandle() {
505 return std::move(mDetachedBufferHandle);
506 }
507
508 // ---------------------------------------------------------------------------
509
510 }; // namespace android
511