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Pawin Vongmasa36653902018-11-15 00:10:25 -08001/*
2 * Copyright 2018, 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_NDEBUG 0
18#define LOG_TAG "Codec2Buffer"
My Name6bd9a7d2022-03-25 12:37:58 -070019#define ATRACE_TAG ATRACE_TAG_VIDEO
Pawin Vongmasa36653902018-11-15 00:10:25 -080020#include <utils/Log.h>
My Name6bd9a7d2022-03-25 12:37:58 -070021#include <utils/Trace.h>
Pawin Vongmasa36653902018-11-15 00:10:25 -080022
Wonsik Kima79c5522022-01-18 16:29:24 -080023#include <aidl/android/hardware/graphics/common/Cta861_3.h>
24#include <aidl/android/hardware/graphics/common/Smpte2086.h>
Wonsik Kim89814312023-02-01 10:46:16 -080025#include <android-base/no_destructor.h>
bohua222c0b2021-01-12 18:54:53 -080026#include <android-base/properties.h>
Wonsik Kim41d83432020-04-27 16:40:49 -070027#include <android/hardware/cas/native/1.0/types.h>
28#include <android/hardware/drm/1.0/types.h>
Wonsik Kima79c5522022-01-18 16:29:24 -080029#include <android/hardware/graphics/common/1.2/types.h>
30#include <android/hardware/graphics/mapper/4.0/IMapper.h>
31#include <gralloctypes/Gralloc4.h>
Pawin Vongmasa36653902018-11-15 00:10:25 -080032#include <hidlmemory/FrameworkUtils.h>
33#include <media/hardware/HardwareAPI.h>
Robert Shih895fba92019-07-16 16:29:44 -070034#include <media/stagefright/CodecBase.h>
Pawin Vongmasa36653902018-11-15 00:10:25 -080035#include <media/stagefright/MediaCodecConstants.h>
36#include <media/stagefright/foundation/ABuffer.h>
37#include <media/stagefright/foundation/AMessage.h>
38#include <media/stagefright/foundation/AUtils.h>
Wonsik Kim41d83432020-04-27 16:40:49 -070039#include <mediadrm/ICrypto.h>
Pawin Vongmasa36653902018-11-15 00:10:25 -080040#include <nativebase/nativebase.h>
Wonsik Kimebe0f9e2019-07-03 11:06:51 -070041#include <ui/Fence.h>
Pawin Vongmasa36653902018-11-15 00:10:25 -080042
43#include <C2AllocatorGralloc.h>
44#include <C2BlockInternal.h>
45#include <C2Debug.h>
46
47#include "Codec2Buffer.h"
48
49namespace android {
50
51// Codec2Buffer
52
53bool Codec2Buffer::canCopyLinear(const std::shared_ptr<C2Buffer> &buffer) const {
54 if (const_cast<Codec2Buffer *>(this)->base() == nullptr) {
55 return false;
56 }
57 if (!buffer) {
58 // Nothing to copy, so we can copy by doing nothing.
59 return true;
60 }
61 if (buffer->data().type() != C2BufferData::LINEAR) {
62 return false;
63 }
64 if (buffer->data().linearBlocks().size() == 0u) {
65 // Nothing to copy, so we can copy by doing nothing.
66 return true;
67 } else if (buffer->data().linearBlocks().size() > 1u) {
68 // We don't know how to copy more than one blocks.
69 return false;
70 }
71 if (buffer->data().linearBlocks()[0].size() > capacity()) {
72 // It won't fit.
73 return false;
74 }
75 return true;
76}
77
78bool Codec2Buffer::copyLinear(const std::shared_ptr<C2Buffer> &buffer) {
79 // We assume that all canCopyLinear() checks passed.
80 if (!buffer || buffer->data().linearBlocks().size() == 0u
81 || buffer->data().linearBlocks()[0].size() == 0u) {
82 setRange(0, 0);
83 return true;
84 }
85 C2ReadView view = buffer->data().linearBlocks()[0].map().get();
86 if (view.error() != C2_OK) {
87 ALOGD("Error while mapping: %d", view.error());
88 return false;
89 }
90 if (view.capacity() > capacity()) {
91 ALOGD("C2ConstLinearBlock lied --- it actually doesn't fit: view(%u) > this(%zu)",
92 view.capacity(), capacity());
93 return false;
94 }
95 memcpy(base(), view.data(), view.capacity());
96 setRange(0, view.capacity());
97 return true;
98}
99
100void Codec2Buffer::setImageData(const sp<ABuffer> &imageData) {
Wonsik Kimc48ddcf2019-02-11 16:16:57 -0800101 mImageData = imageData;
Pawin Vongmasa36653902018-11-15 00:10:25 -0800102}
103
104// LocalLinearBuffer
105
106bool LocalLinearBuffer::canCopy(const std::shared_ptr<C2Buffer> &buffer) const {
107 return canCopyLinear(buffer);
108}
109
110bool LocalLinearBuffer::copy(const std::shared_ptr<C2Buffer> &buffer) {
111 return copyLinear(buffer);
112}
113
114// DummyContainerBuffer
115
Pawin Vongmasa8be93112018-12-11 14:01:42 -0800116static uint8_t sDummyByte[1] = { 0 };
117
Pawin Vongmasa36653902018-11-15 00:10:25 -0800118DummyContainerBuffer::DummyContainerBuffer(
119 const sp<AMessage> &format, const std::shared_ptr<C2Buffer> &buffer)
Pawin Vongmasa8be93112018-12-11 14:01:42 -0800120 : Codec2Buffer(format, new ABuffer(sDummyByte, 1)),
Pawin Vongmasa36653902018-11-15 00:10:25 -0800121 mBufferRef(buffer) {
122 setRange(0, buffer ? 1 : 0);
123}
124
125std::shared_ptr<C2Buffer> DummyContainerBuffer::asC2Buffer() {
Wonsik Kimf9b32122020-04-02 11:30:17 -0700126 return mBufferRef;
127}
128
129void DummyContainerBuffer::clearC2BufferRefs() {
130 mBufferRef.reset();
Pawin Vongmasa36653902018-11-15 00:10:25 -0800131}
132
133bool DummyContainerBuffer::canCopy(const std::shared_ptr<C2Buffer> &) const {
134 return !mBufferRef;
135}
136
137bool DummyContainerBuffer::copy(const std::shared_ptr<C2Buffer> &buffer) {
138 mBufferRef = buffer;
139 setRange(0, mBufferRef ? 1 : 0);
140 return true;
141}
142
143// LinearBlockBuffer
144
145// static
146sp<LinearBlockBuffer> LinearBlockBuffer::Allocate(
147 const sp<AMessage> &format, const std::shared_ptr<C2LinearBlock> &block) {
148 C2WriteView writeView(block->map().get());
149 if (writeView.error() != C2_OK) {
150 return nullptr;
151 }
152 return new LinearBlockBuffer(format, std::move(writeView), block);
153}
154
155std::shared_ptr<C2Buffer> LinearBlockBuffer::asC2Buffer() {
156 return C2Buffer::CreateLinearBuffer(mBlock->share(offset(), size(), C2Fence()));
157}
158
159bool LinearBlockBuffer::canCopy(const std::shared_ptr<C2Buffer> &buffer) const {
160 return canCopyLinear(buffer);
161}
162
163bool LinearBlockBuffer::copy(const std::shared_ptr<C2Buffer> &buffer) {
164 return copyLinear(buffer);
165}
166
167LinearBlockBuffer::LinearBlockBuffer(
168 const sp<AMessage> &format,
169 C2WriteView&& writeView,
170 const std::shared_ptr<C2LinearBlock> &block)
171 : Codec2Buffer(format, new ABuffer(writeView.data(), writeView.size())),
172 mWriteView(writeView),
173 mBlock(block) {
174}
175
176// ConstLinearBlockBuffer
177
178// static
179sp<ConstLinearBlockBuffer> ConstLinearBlockBuffer::Allocate(
180 const sp<AMessage> &format, const std::shared_ptr<C2Buffer> &buffer) {
181 if (!buffer
182 || buffer->data().type() != C2BufferData::LINEAR
183 || buffer->data().linearBlocks().size() != 1u) {
184 return nullptr;
185 }
186 C2ReadView readView(buffer->data().linearBlocks()[0].map().get());
187 if (readView.error() != C2_OK) {
188 return nullptr;
189 }
190 return new ConstLinearBlockBuffer(format, std::move(readView), buffer);
191}
192
193ConstLinearBlockBuffer::ConstLinearBlockBuffer(
194 const sp<AMessage> &format,
195 C2ReadView&& readView,
196 const std::shared_ptr<C2Buffer> &buffer)
197 : Codec2Buffer(format, new ABuffer(
198 // NOTE: ABuffer only takes non-const pointer but this data is
199 // supposed to be read-only.
200 const_cast<uint8_t *>(readView.data()), readView.capacity())),
201 mReadView(readView),
202 mBufferRef(buffer) {
203}
204
205std::shared_ptr<C2Buffer> ConstLinearBlockBuffer::asC2Buffer() {
Wonsik Kimf9b32122020-04-02 11:30:17 -0700206 return mBufferRef;
207}
208
209void ConstLinearBlockBuffer::clearC2BufferRefs() {
210 mBufferRef.reset();
Pawin Vongmasa36653902018-11-15 00:10:25 -0800211}
212
213// GraphicView2MediaImageConverter
214
215namespace {
216
217class GraphicView2MediaImageConverter {
218public:
219 /**
220 * Creates a C2GraphicView <=> MediaImage converter
221 *
222 * \param view C2GraphicView object
Wonsik Kimd79ee1f2020-08-27 17:41:56 -0700223 * \param format buffer format
Wonsik Kim7d966312019-06-04 14:00:49 -0700224 * \param copy whether the converter is used for copy or not
Pawin Vongmasa36653902018-11-15 00:10:25 -0800225 */
226 GraphicView2MediaImageConverter(
Wonsik Kimd79ee1f2020-08-27 17:41:56 -0700227 const C2GraphicView &view, const sp<AMessage> &format, bool copy)
Pawin Vongmasa36653902018-11-15 00:10:25 -0800228 : mInitCheck(NO_INIT),
229 mView(view),
230 mWidth(view.width()),
231 mHeight(view.height()),
Pawin Vongmasa36653902018-11-15 00:10:25 -0800232 mAllocatedDepth(0),
233 mBackBufferSize(0),
234 mMediaImage(new ABuffer(sizeof(MediaImage2))) {
My Name6bd9a7d2022-03-25 12:37:58 -0700235 ATRACE_CALL();
Wonsik Kimd79ee1f2020-08-27 17:41:56 -0700236 if (!format->findInt32(KEY_COLOR_FORMAT, &mClientColorFormat)) {
237 mClientColorFormat = COLOR_FormatYUV420Flexible;
238 }
239 if (!format->findInt32("android._color-format", &mComponentColorFormat)) {
240 mComponentColorFormat = COLOR_FormatYUV420Flexible;
241 }
Pawin Vongmasa36653902018-11-15 00:10:25 -0800242 if (view.error() != C2_OK) {
243 ALOGD("Converter: view.error() = %d", view.error());
244 mInitCheck = BAD_VALUE;
245 return;
246 }
247 MediaImage2 *mediaImage = (MediaImage2 *)mMediaImage->base();
248 const C2PlanarLayout &layout = view.layout();
249 if (layout.numPlanes == 0) {
250 ALOGD("Converter: 0 planes");
251 mInitCheck = BAD_VALUE;
252 return;
253 }
Harish Mahendrakarcac53852019-02-20 10:59:10 -0800254 memset(mediaImage, 0, sizeof(*mediaImage));
Pawin Vongmasa36653902018-11-15 00:10:25 -0800255 mAllocatedDepth = layout.planes[0].allocatedDepth;
256 uint32_t bitDepth = layout.planes[0].bitDepth;
257
258 // align width and height to support subsampling cleanly
Wonsik Kim8bfa17a2019-05-30 22:12:30 -0700259 uint32_t stride = align(view.crop().width, 2) * divUp(layout.planes[0].allocatedDepth, 8u);
260 uint32_t vStride = align(view.crop().height, 2);
Pawin Vongmasa36653902018-11-15 00:10:25 -0800261
Wonsik Kimd79ee1f2020-08-27 17:41:56 -0700262 bool tryWrapping = !copy;
263
Pawin Vongmasa36653902018-11-15 00:10:25 -0800264 switch (layout.type) {
Wonsik Kimd79ee1f2020-08-27 17:41:56 -0700265 case C2PlanarLayout::TYPE_YUV: {
Pawin Vongmasa36653902018-11-15 00:10:25 -0800266 mediaImage->mType = MediaImage2::MEDIA_IMAGE_TYPE_YUV;
267 if (layout.numPlanes != 3) {
268 ALOGD("Converter: %d planes for YUV layout", layout.numPlanes);
269 mInitCheck = BAD_VALUE;
270 return;
271 }
Arun Johnson3ab32cd2022-06-10 18:58:01 +0000272 std::optional<int> clientBitDepth = {};
273 switch (mClientColorFormat) {
274 case COLOR_FormatYUVP010:
275 clientBitDepth = 10;
276 break;
277 case COLOR_FormatYUV411PackedPlanar:
278 case COLOR_FormatYUV411Planar:
279 case COLOR_FormatYUV420Flexible:
280 case COLOR_FormatYUV420PackedPlanar:
281 case COLOR_FormatYUV420PackedSemiPlanar:
282 case COLOR_FormatYUV420Planar:
283 case COLOR_FormatYUV420SemiPlanar:
284 case COLOR_FormatYUV422Flexible:
285 case COLOR_FormatYUV422PackedPlanar:
286 case COLOR_FormatYUV422PackedSemiPlanar:
287 case COLOR_FormatYUV422Planar:
288 case COLOR_FormatYUV422SemiPlanar:
289 case COLOR_FormatYUV444Flexible:
290 case COLOR_FormatYUV444Interleaved:
291 clientBitDepth = 8;
292 break;
293 default:
294 // no-op; used with optional
295 break;
296
297 }
298 // conversion fails if client bit-depth and the component bit-depth differs
299 if ((clientBitDepth) && (bitDepth != clientBitDepth.value())) {
300 ALOGD("Bit depth of client: %d and component: %d differs",
301 *clientBitDepth, bitDepth);
302 mInitCheck = BAD_VALUE;
303 return;
304 }
Wonsik Kimd79ee1f2020-08-27 17:41:56 -0700305 C2PlaneInfo yPlane = layout.planes[C2PlanarLayout::PLANE_Y];
306 C2PlaneInfo uPlane = layout.planes[C2PlanarLayout::PLANE_U];
307 C2PlaneInfo vPlane = layout.planes[C2PlanarLayout::PLANE_V];
308 if (yPlane.channel != C2PlaneInfo::CHANNEL_Y
309 || uPlane.channel != C2PlaneInfo::CHANNEL_CB
310 || vPlane.channel != C2PlaneInfo::CHANNEL_CR) {
311 ALOGD("Converter: not YUV layout");
Pawin Vongmasa36653902018-11-15 00:10:25 -0800312 mInitCheck = BAD_VALUE;
313 return;
314 }
Wonsik Kimd79ee1f2020-08-27 17:41:56 -0700315 bool yuv420888 = yPlane.rowSampling == 1 && yPlane.colSampling == 1
316 && uPlane.rowSampling == 2 && uPlane.colSampling == 2
317 && vPlane.rowSampling == 2 && vPlane.colSampling == 2;
318 if (yuv420888) {
319 for (uint32_t i = 0; i < 3; ++i) {
320 const C2PlaneInfo &plane = layout.planes[i];
321 if (plane.allocatedDepth != 8 || plane.bitDepth != 8) {
322 yuv420888 = false;
323 break;
Pawin Vongmasa36653902018-11-15 00:10:25 -0800324 }
Wonsik Kimd79ee1f2020-08-27 17:41:56 -0700325 }
326 yuv420888 = yuv420888 && yPlane.colInc == 1 && uPlane.rowInc == vPlane.rowInc;
327 }
328 int32_t copyFormat = mClientColorFormat;
329 if (yuv420888 && mClientColorFormat == COLOR_FormatYUV420Flexible) {
330 if (uPlane.colInc == 2 && vPlane.colInc == 2
331 && yPlane.rowInc == uPlane.rowInc) {
332 copyFormat = COLOR_FormatYUV420PackedSemiPlanar;
333 } else if (uPlane.colInc == 1 && vPlane.colInc == 1
334 && yPlane.rowInc == uPlane.rowInc * 2) {
335 copyFormat = COLOR_FormatYUV420PackedPlanar;
336 }
337 }
338 ALOGV("client_fmt=0x%x y:{colInc=%d rowInc=%d} u:{colInc=%d rowInc=%d} "
339 "v:{colInc=%d rowInc=%d}",
340 mClientColorFormat,
341 yPlane.colInc, yPlane.rowInc,
342 uPlane.colInc, uPlane.rowInc,
343 vPlane.colInc, vPlane.rowInc);
344 switch (copyFormat) {
345 case COLOR_FormatYUV420Flexible:
Pawin Vongmasa36653902018-11-15 00:10:25 -0800346 case COLOR_FormatYUV420Planar:
347 case COLOR_FormatYUV420PackedPlanar:
348 mediaImage->mPlane[mediaImage->Y].mOffset = 0;
349 mediaImage->mPlane[mediaImage->Y].mColInc = 1;
Wonsik Kim8bfa17a2019-05-30 22:12:30 -0700350 mediaImage->mPlane[mediaImage->Y].mRowInc = stride;
Pawin Vongmasa36653902018-11-15 00:10:25 -0800351 mediaImage->mPlane[mediaImage->Y].mHorizSubsampling = 1;
352 mediaImage->mPlane[mediaImage->Y].mVertSubsampling = 1;
353
Wonsik Kim8bfa17a2019-05-30 22:12:30 -0700354 mediaImage->mPlane[mediaImage->U].mOffset = stride * vStride;
Pawin Vongmasa36653902018-11-15 00:10:25 -0800355 mediaImage->mPlane[mediaImage->U].mColInc = 1;
Wonsik Kim8bfa17a2019-05-30 22:12:30 -0700356 mediaImage->mPlane[mediaImage->U].mRowInc = stride / 2;
Pawin Vongmasa36653902018-11-15 00:10:25 -0800357 mediaImage->mPlane[mediaImage->U].mHorizSubsampling = 2;
358 mediaImage->mPlane[mediaImage->U].mVertSubsampling = 2;
359
Wonsik Kim8bfa17a2019-05-30 22:12:30 -0700360 mediaImage->mPlane[mediaImage->V].mOffset = stride * vStride * 5 / 4;
Pawin Vongmasa36653902018-11-15 00:10:25 -0800361 mediaImage->mPlane[mediaImage->V].mColInc = 1;
Wonsik Kim8bfa17a2019-05-30 22:12:30 -0700362 mediaImage->mPlane[mediaImage->V].mRowInc = stride / 2;
Pawin Vongmasa36653902018-11-15 00:10:25 -0800363 mediaImage->mPlane[mediaImage->V].mHorizSubsampling = 2;
364 mediaImage->mPlane[mediaImage->V].mVertSubsampling = 2;
Wonsik Kimd79ee1f2020-08-27 17:41:56 -0700365
366 if (tryWrapping && mClientColorFormat != COLOR_FormatYUV420Flexible) {
367 tryWrapping = yuv420888 && uPlane.colInc == 1 && vPlane.colInc == 1
368 && yPlane.rowInc == uPlane.rowInc * 2
369 && view.data()[0] < view.data()[1]
370 && view.data()[1] < view.data()[2];
371 }
Pawin Vongmasa36653902018-11-15 00:10:25 -0800372 break;
373
374 case COLOR_FormatYUV420SemiPlanar:
375 case COLOR_FormatYUV420PackedSemiPlanar:
376 mediaImage->mPlane[mediaImage->Y].mOffset = 0;
377 mediaImage->mPlane[mediaImage->Y].mColInc = 1;
Wonsik Kim8bfa17a2019-05-30 22:12:30 -0700378 mediaImage->mPlane[mediaImage->Y].mRowInc = stride;
Pawin Vongmasa36653902018-11-15 00:10:25 -0800379 mediaImage->mPlane[mediaImage->Y].mHorizSubsampling = 1;
380 mediaImage->mPlane[mediaImage->Y].mVertSubsampling = 1;
381
Wonsik Kim8bfa17a2019-05-30 22:12:30 -0700382 mediaImage->mPlane[mediaImage->U].mOffset = stride * vStride;
Pawin Vongmasa36653902018-11-15 00:10:25 -0800383 mediaImage->mPlane[mediaImage->U].mColInc = 2;
Wonsik Kim8bfa17a2019-05-30 22:12:30 -0700384 mediaImage->mPlane[mediaImage->U].mRowInc = stride;
Pawin Vongmasa36653902018-11-15 00:10:25 -0800385 mediaImage->mPlane[mediaImage->U].mHorizSubsampling = 2;
386 mediaImage->mPlane[mediaImage->U].mVertSubsampling = 2;
387
Wonsik Kim8bfa17a2019-05-30 22:12:30 -0700388 mediaImage->mPlane[mediaImage->V].mOffset = stride * vStride + 1;
Pawin Vongmasa36653902018-11-15 00:10:25 -0800389 mediaImage->mPlane[mediaImage->V].mColInc = 2;
Wonsik Kim8bfa17a2019-05-30 22:12:30 -0700390 mediaImage->mPlane[mediaImage->V].mRowInc = stride;
Pawin Vongmasa36653902018-11-15 00:10:25 -0800391 mediaImage->mPlane[mediaImage->V].mHorizSubsampling = 2;
392 mediaImage->mPlane[mediaImage->V].mVertSubsampling = 2;
Wonsik Kimd79ee1f2020-08-27 17:41:56 -0700393
394 if (tryWrapping && mClientColorFormat != COLOR_FormatYUV420Flexible) {
395 tryWrapping = yuv420888 && uPlane.colInc == 2 && vPlane.colInc == 2
396 && yPlane.rowInc == uPlane.rowInc
397 && view.data()[0] < view.data()[1]
398 && view.data()[1] < view.data()[2];
399 }
Pawin Vongmasa36653902018-11-15 00:10:25 -0800400 break;
401
Wonsik Kim29e3c4d2020-09-02 12:19:44 -0700402 case COLOR_FormatYUVP010:
Wonsik Kim08a8a2b2021-05-10 19:03:47 -0700403 // stride is in bytes
Wonsik Kim29e3c4d2020-09-02 12:19:44 -0700404 mediaImage->mPlane[mediaImage->Y].mOffset = 0;
405 mediaImage->mPlane[mediaImage->Y].mColInc = 2;
Wonsik Kim08a8a2b2021-05-10 19:03:47 -0700406 mediaImage->mPlane[mediaImage->Y].mRowInc = stride;
Wonsik Kim29e3c4d2020-09-02 12:19:44 -0700407 mediaImage->mPlane[mediaImage->Y].mHorizSubsampling = 1;
408 mediaImage->mPlane[mediaImage->Y].mVertSubsampling = 1;
409
Wonsik Kim08a8a2b2021-05-10 19:03:47 -0700410 mediaImage->mPlane[mediaImage->U].mOffset = stride * vStride;
Wonsik Kim29e3c4d2020-09-02 12:19:44 -0700411 mediaImage->mPlane[mediaImage->U].mColInc = 4;
Wonsik Kim08a8a2b2021-05-10 19:03:47 -0700412 mediaImage->mPlane[mediaImage->U].mRowInc = stride;
Wonsik Kim29e3c4d2020-09-02 12:19:44 -0700413 mediaImage->mPlane[mediaImage->U].mHorizSubsampling = 2;
414 mediaImage->mPlane[mediaImage->U].mVertSubsampling = 2;
415
Wonsik Kim08a8a2b2021-05-10 19:03:47 -0700416 mediaImage->mPlane[mediaImage->V].mOffset = stride * vStride + 2;
Wonsik Kim29e3c4d2020-09-02 12:19:44 -0700417 mediaImage->mPlane[mediaImage->V].mColInc = 4;
Wonsik Kim08a8a2b2021-05-10 19:03:47 -0700418 mediaImage->mPlane[mediaImage->V].mRowInc = stride;
Wonsik Kim29e3c4d2020-09-02 12:19:44 -0700419 mediaImage->mPlane[mediaImage->V].mHorizSubsampling = 2;
420 mediaImage->mPlane[mediaImage->V].mVertSubsampling = 2;
Wonsik Kimd79ee1f2020-08-27 17:41:56 -0700421 if (tryWrapping) {
422 tryWrapping = yPlane.allocatedDepth == 16
423 && uPlane.allocatedDepth == 16
424 && vPlane.allocatedDepth == 16
425 && yPlane.bitDepth == 10
426 && uPlane.bitDepth == 10
427 && vPlane.bitDepth == 10
428 && yPlane.rightShift == 6
429 && uPlane.rightShift == 6
430 && vPlane.rightShift == 6
431 && yPlane.rowSampling == 1 && yPlane.colSampling == 1
432 && uPlane.rowSampling == 2 && uPlane.colSampling == 2
433 && vPlane.rowSampling == 2 && vPlane.colSampling == 2
434 && yPlane.colInc == 2
435 && uPlane.colInc == 4
436 && vPlane.colInc == 4
437 && yPlane.rowInc == uPlane.rowInc
438 && yPlane.rowInc == vPlane.rowInc;
439 }
Wonsik Kim29e3c4d2020-09-02 12:19:44 -0700440 break;
441
Wonsik Kimd79ee1f2020-08-27 17:41:56 -0700442 default: {
443 // default to fully planar format --- this will be overridden if wrapping
444 // TODO: keep interleaved format
445 int32_t colInc = divUp(mAllocatedDepth, 8u);
446 int32_t rowInc = stride * colInc / yPlane.colSampling;
447 mediaImage->mPlane[mediaImage->Y].mOffset = 0;
448 mediaImage->mPlane[mediaImage->Y].mColInc = colInc;
449 mediaImage->mPlane[mediaImage->Y].mRowInc = rowInc;
450 mediaImage->mPlane[mediaImage->Y].mHorizSubsampling = yPlane.colSampling;
451 mediaImage->mPlane[mediaImage->Y].mVertSubsampling = yPlane.rowSampling;
452 int32_t offset = rowInc * vStride / yPlane.rowSampling;
453
454 rowInc = stride * colInc / uPlane.colSampling;
455 mediaImage->mPlane[mediaImage->U].mOffset = offset;
456 mediaImage->mPlane[mediaImage->U].mColInc = colInc;
457 mediaImage->mPlane[mediaImage->U].mRowInc = rowInc;
458 mediaImage->mPlane[mediaImage->U].mHorizSubsampling = uPlane.colSampling;
459 mediaImage->mPlane[mediaImage->U].mVertSubsampling = uPlane.rowSampling;
460 offset += rowInc * vStride / uPlane.rowSampling;
461
462 rowInc = stride * colInc / vPlane.colSampling;
463 mediaImage->mPlane[mediaImage->V].mOffset = offset;
464 mediaImage->mPlane[mediaImage->V].mColInc = colInc;
465 mediaImage->mPlane[mediaImage->V].mRowInc = rowInc;
466 mediaImage->mPlane[mediaImage->V].mHorizSubsampling = vPlane.colSampling;
467 mediaImage->mPlane[mediaImage->V].mVertSubsampling = vPlane.rowSampling;
468 break;
469 }
Pawin Vongmasa36653902018-11-15 00:10:25 -0800470 }
471 break;
Wonsik Kimd79ee1f2020-08-27 17:41:56 -0700472 }
473
Pawin Vongmasa36653902018-11-15 00:10:25 -0800474 case C2PlanarLayout::TYPE_YUVA:
Wonsik Kimd79ee1f2020-08-27 17:41:56 -0700475 ALOGD("Converter: unrecognized color format "
476 "(client %d component %d) for YUVA layout",
477 mClientColorFormat, mComponentColorFormat);
478 mInitCheck = NO_INIT;
Pawin Vongmasa36653902018-11-15 00:10:25 -0800479 return;
480 case C2PlanarLayout::TYPE_RGB:
Wonsik Kimd79ee1f2020-08-27 17:41:56 -0700481 ALOGD("Converter: unrecognized color format "
482 "(client %d component %d) for RGB layout",
483 mClientColorFormat, mComponentColorFormat);
484 mInitCheck = NO_INIT;
485 // TODO: support MediaImage layout
486 return;
Pawin Vongmasa36653902018-11-15 00:10:25 -0800487 case C2PlanarLayout::TYPE_RGBA:
Wonsik Kimd79ee1f2020-08-27 17:41:56 -0700488 ALOGD("Converter: unrecognized color format "
489 "(client %d component %d) for RGBA layout",
490 mClientColorFormat, mComponentColorFormat);
491 mInitCheck = NO_INIT;
492 // TODO: support MediaImage layout
493 return;
Pawin Vongmasa36653902018-11-15 00:10:25 -0800494 default:
495 mediaImage->mType = MediaImage2::MEDIA_IMAGE_TYPE_UNKNOWN;
Wonsik Kimd79ee1f2020-08-27 17:41:56 -0700496 if (layout.numPlanes == 1) {
497 const C2PlaneInfo &plane = layout.planes[0];
498 if (plane.colInc < 0 || plane.rowInc < 0) {
499 // Copy-only if we have negative colInc/rowInc
500 tryWrapping = false;
501 }
502 mediaImage->mPlane[0].mOffset = 0;
503 mediaImage->mPlane[0].mColInc = std::abs(plane.colInc);
504 mediaImage->mPlane[0].mRowInc = std::abs(plane.rowInc);
505 mediaImage->mPlane[0].mHorizSubsampling = plane.colSampling;
506 mediaImage->mPlane[0].mVertSubsampling = plane.rowSampling;
507 } else {
508 ALOGD("Converter: unrecognized layout: color format (client %d component %d)",
509 mClientColorFormat, mComponentColorFormat);
510 mInitCheck = NO_INIT;
511 return;
512 }
513 break;
514 }
515 if (tryWrapping) {
516 // try to map directly. check if the planes are near one another
517 const uint8_t *minPtr = mView.data()[0];
518 const uint8_t *maxPtr = mView.data()[0];
519 int32_t planeSize = 0;
520 for (uint32_t i = 0; i < layout.numPlanes; ++i) {
521 const C2PlaneInfo &plane = layout.planes[i];
522 int64_t planeStride = std::abs(plane.rowInc / plane.colInc);
523 ssize_t minOffset = plane.minOffset(
524 mWidth / plane.colSampling, mHeight / plane.rowSampling);
525 ssize_t maxOffset = plane.maxOffset(
526 mWidth / plane.colSampling, mHeight / plane.rowSampling);
527 if (minPtr > mView.data()[i] + minOffset) {
528 minPtr = mView.data()[i] + minOffset;
529 }
530 if (maxPtr < mView.data()[i] + maxOffset) {
531 maxPtr = mView.data()[i] + maxOffset;
532 }
533 planeSize += planeStride * divUp(mAllocatedDepth, 8u)
534 * align(mHeight, 64) / plane.rowSampling;
535 }
536
Wonsik Kim1bf84162022-09-20 11:00:42 -0700537 if (minPtr == mView.data()[0] && (maxPtr - minPtr) <= planeSize) {
Wonsik Kimd79ee1f2020-08-27 17:41:56 -0700538 // FIXME: this is risky as reading/writing data out of bound results
539 // in an undefined behavior, but gralloc does assume a
540 // contiguous mapping
541 for (uint32_t i = 0; i < layout.numPlanes; ++i) {
542 const C2PlaneInfo &plane = layout.planes[i];
543 mediaImage->mPlane[i].mOffset = mView.data()[i] - minPtr;
544 mediaImage->mPlane[i].mColInc = plane.colInc;
545 mediaImage->mPlane[i].mRowInc = plane.rowInc;
546 mediaImage->mPlane[i].mHorizSubsampling = plane.colSampling;
547 mediaImage->mPlane[i].mVertSubsampling = plane.rowSampling;
548 }
Wonsik Kim1bf84162022-09-20 11:00:42 -0700549 mWrapped = new ABuffer(const_cast<uint8_t *>(minPtr), maxPtr - minPtr);
Wonsik Kimd79ee1f2020-08-27 17:41:56 -0700550 ALOGV("Converter: wrapped (capacity=%zu)", mWrapped->capacity());
551 }
Pawin Vongmasa36653902018-11-15 00:10:25 -0800552 }
553 mediaImage->mNumPlanes = layout.numPlanes;
Harish Mahendrakarf7c49e22019-05-24 14:19:16 -0700554 mediaImage->mWidth = view.crop().width;
555 mediaImage->mHeight = view.crop().height;
Pawin Vongmasa36653902018-11-15 00:10:25 -0800556 mediaImage->mBitDepth = bitDepth;
557 mediaImage->mBitDepthAllocated = mAllocatedDepth;
558
559 uint32_t bufferSize = 0;
560 for (uint32_t i = 0; i < layout.numPlanes; ++i) {
561 const C2PlaneInfo &plane = layout.planes[i];
562 if (plane.allocatedDepth < plane.bitDepth
563 || plane.rightShift != plane.allocatedDepth - plane.bitDepth) {
564 ALOGD("rightShift value of %u unsupported", plane.rightShift);
565 mInitCheck = BAD_VALUE;
566 return;
567 }
568 if (plane.allocatedDepth > 8 && plane.endianness != C2PlaneInfo::NATIVE) {
569 ALOGD("endianness value of %u unsupported", plane.endianness);
570 mInitCheck = BAD_VALUE;
571 return;
572 }
573 if (plane.allocatedDepth != mAllocatedDepth || plane.bitDepth != bitDepth) {
Wonsik Kimd79ee1f2020-08-27 17:41:56 -0700574 ALOGD("different allocatedDepth/bitDepth per plane unsupported");
Pawin Vongmasa36653902018-11-15 00:10:25 -0800575 mInitCheck = BAD_VALUE;
576 return;
577 }
Wonsik Kim08a8a2b2021-05-10 19:03:47 -0700578 // stride is in bytes
579 bufferSize += stride * vStride / plane.rowSampling / plane.colSampling;
Pawin Vongmasa36653902018-11-15 00:10:25 -0800580 }
581
582 mBackBufferSize = bufferSize;
583 mInitCheck = OK;
584 }
585
586 status_t initCheck() const { return mInitCheck; }
587
588 uint32_t backBufferSize() const { return mBackBufferSize; }
589
590 /**
591 * Wrap C2GraphicView using a MediaImage2. Note that if not wrapped, the content is not mapped
592 * in this function --- the caller should use CopyGraphicView2MediaImage() function to copy the
593 * data into a backing buffer explicitly.
594 *
595 * \return media buffer. This is null if wrapping failed.
596 */
597 sp<ABuffer> wrap() const {
598 if (mBackBuffer == nullptr) {
599 return mWrapped;
600 }
601 return nullptr;
602 }
603
604 bool setBackBuffer(const sp<ABuffer> &backBuffer) {
Wonsik Kim186fdbf2019-01-29 13:30:01 -0800605 if (backBuffer == nullptr) {
606 return false;
607 }
Pawin Vongmasa36653902018-11-15 00:10:25 -0800608 if (backBuffer->capacity() < mBackBufferSize) {
609 return false;
610 }
611 backBuffer->setRange(0, mBackBufferSize);
612 mBackBuffer = backBuffer;
613 return true;
614 }
615
616 /**
617 * Copy C2GraphicView to MediaImage2.
618 */
619 status_t copyToMediaImage() {
My Name6bd9a7d2022-03-25 12:37:58 -0700620 ATRACE_CALL();
Pawin Vongmasa36653902018-11-15 00:10:25 -0800621 if (mInitCheck != OK) {
622 return mInitCheck;
623 }
624 return ImageCopy(mBackBuffer->base(), getMediaImage(), mView);
625 }
626
627 const sp<ABuffer> &imageData() const { return mMediaImage; }
628
629private:
630 status_t mInitCheck;
631
632 const C2GraphicView mView;
633 uint32_t mWidth;
634 uint32_t mHeight;
Wonsik Kimd79ee1f2020-08-27 17:41:56 -0700635 int32_t mClientColorFormat; ///< SDK color format for MediaImage
636 int32_t mComponentColorFormat; ///< SDK color format from component
Pawin Vongmasa36653902018-11-15 00:10:25 -0800637 sp<ABuffer> mWrapped; ///< wrapped buffer (if we can map C2Buffer to an ABuffer)
638 uint32_t mAllocatedDepth;
639 uint32_t mBackBufferSize;
640 sp<ABuffer> mMediaImage;
641 std::function<sp<ABuffer>(size_t)> mAlloc;
642
643 sp<ABuffer> mBackBuffer; ///< backing buffer if we have to copy C2Buffer <=> ABuffer
644
645 MediaImage2 *getMediaImage() {
646 return (MediaImage2 *)mMediaImage->base();
647 }
648};
649
650} // namespace
651
652// GraphicBlockBuffer
653
654// static
655sp<GraphicBlockBuffer> GraphicBlockBuffer::Allocate(
656 const sp<AMessage> &format,
657 const std::shared_ptr<C2GraphicBlock> &block,
658 std::function<sp<ABuffer>(size_t)> alloc) {
My Name6bd9a7d2022-03-25 12:37:58 -0700659 ATRACE_BEGIN("GraphicBlockBuffer::Allocate block->map()");
Pawin Vongmasa36653902018-11-15 00:10:25 -0800660 C2GraphicView view(block->map().get());
My Name6bd9a7d2022-03-25 12:37:58 -0700661 ATRACE_END();
Pawin Vongmasa36653902018-11-15 00:10:25 -0800662 if (view.error() != C2_OK) {
663 ALOGD("C2GraphicBlock::map failed: %d", view.error());
664 return nullptr;
665 }
666
Wonsik Kimd79ee1f2020-08-27 17:41:56 -0700667 GraphicView2MediaImageConverter converter(view, format, false /* copy */);
Pawin Vongmasa36653902018-11-15 00:10:25 -0800668 if (converter.initCheck() != OK) {
669 ALOGD("Converter init failed: %d", converter.initCheck());
670 return nullptr;
671 }
672 bool wrapped = true;
673 sp<ABuffer> buffer = converter.wrap();
674 if (buffer == nullptr) {
675 buffer = alloc(converter.backBufferSize());
676 if (!converter.setBackBuffer(buffer)) {
677 ALOGD("Converter failed to set back buffer");
678 return nullptr;
679 }
680 wrapped = false;
681 }
682 return new GraphicBlockBuffer(
683 format,
684 buffer,
685 std::move(view),
686 block,
687 converter.imageData(),
688 wrapped);
689}
690
691GraphicBlockBuffer::GraphicBlockBuffer(
692 const sp<AMessage> &format,
693 const sp<ABuffer> &buffer,
694 C2GraphicView &&view,
695 const std::shared_ptr<C2GraphicBlock> &block,
696 const sp<ABuffer> &imageData,
697 bool wrapped)
698 : Codec2Buffer(format, buffer),
699 mView(view),
700 mBlock(block),
Pawin Vongmasa36653902018-11-15 00:10:25 -0800701 mWrapped(wrapped) {
702 setImageData(imageData);
703}
704
705std::shared_ptr<C2Buffer> GraphicBlockBuffer::asC2Buffer() {
My Name6bd9a7d2022-03-25 12:37:58 -0700706 ATRACE_CALL();
Pawin Vongmasa36653902018-11-15 00:10:25 -0800707 uint32_t width = mView.width();
708 uint32_t height = mView.height();
709 if (!mWrapped) {
710 (void)ImageCopy(mView, base(), imageData());
711 }
712 return C2Buffer::CreateGraphicBuffer(
713 mBlock->share(C2Rect(width, height), C2Fence()));
714}
715
716// GraphicMetadataBuffer
717GraphicMetadataBuffer::GraphicMetadataBuffer(
718 const sp<AMessage> &format,
719 const std::shared_ptr<C2Allocator> &alloc)
720 : Codec2Buffer(format, new ABuffer(sizeof(VideoNativeMetadata))),
721 mAlloc(alloc) {
722 ((VideoNativeMetadata *)base())->pBuffer = nullptr;
723}
724
725std::shared_ptr<C2Buffer> GraphicMetadataBuffer::asC2Buffer() {
bohua222c0b2021-01-12 18:54:53 -0800726#ifdef __LP64__
727 static std::once_flag s_checkOnce;
Harish Mahendrakar731e9142021-04-21 17:20:39 -0700728 static bool s_is64bitOk {true};
bohua222c0b2021-01-12 18:54:53 -0800729 std::call_once(s_checkOnce, [&](){
730 const std::string abi32list =
731 ::android::base::GetProperty("ro.product.cpu.abilist32", "");
Harish Mahendrakar731e9142021-04-21 17:20:39 -0700732 if (!abi32list.empty()) {
733 int32_t inputSurfaceSetting =
734 ::android::base::GetIntProperty("debug.stagefright.c2inputsurface", int32_t(0));
735 s_is64bitOk = inputSurfaceSetting != 0;
bohua222c0b2021-01-12 18:54:53 -0800736 }
737 });
738
Harish Mahendrakar731e9142021-04-21 17:20:39 -0700739 if (!s_is64bitOk) {
740 ALOGE("GraphicMetadataBuffer does not work in 32+64 system if compiled as 64-bit object"\
741 "when debug.stagefright.c2inputsurface is set to 0");
bohua222c0b2021-01-12 18:54:53 -0800742 return nullptr;
743 }
744#endif
745
Pawin Vongmasa36653902018-11-15 00:10:25 -0800746 VideoNativeMetadata *meta = (VideoNativeMetadata *)base();
747 ANativeWindowBuffer *buffer = (ANativeWindowBuffer *)meta->pBuffer;
748 if (buffer == nullptr) {
749 ALOGD("VideoNativeMetadata contains null buffer");
750 return nullptr;
751 }
752
753 ALOGV("VideoNativeMetadata: %dx%d", buffer->width, buffer->height);
754 C2Handle *handle = WrapNativeCodec2GrallocHandle(
Sungtak Leea4d13be2019-01-23 15:24:46 -0800755 buffer->handle,
Pawin Vongmasa36653902018-11-15 00:10:25 -0800756 buffer->width,
757 buffer->height,
758 buffer->format,
759 buffer->usage,
760 buffer->stride);
761 std::shared_ptr<C2GraphicAllocation> alloc;
762 c2_status_t err = mAlloc->priorGraphicAllocation(handle, &alloc);
763 if (err != C2_OK) {
764 ALOGD("Failed to wrap VideoNativeMetadata into C2GraphicAllocation");
Chih-Yu Huangc0ac3552021-03-11 14:37:10 +0900765 native_handle_close(handle);
766 native_handle_delete(handle);
Pawin Vongmasa36653902018-11-15 00:10:25 -0800767 return nullptr;
768 }
769 std::shared_ptr<C2GraphicBlock> block = _C2BlockFactory::CreateGraphicBlock(alloc);
770
771 meta->pBuffer = 0;
Wonsik Kimebe0f9e2019-07-03 11:06:51 -0700772 // TODO: wrap this in C2Fence so that the component can wait when it
773 // actually starts processing.
774 if (meta->nFenceFd >= 0) {
775 sp<Fence> fence(new Fence(meta->nFenceFd));
776 fence->waitForever(LOG_TAG);
777 }
Pawin Vongmasa36653902018-11-15 00:10:25 -0800778 return C2Buffer::CreateGraphicBuffer(
779 block->share(C2Rect(buffer->width, buffer->height), C2Fence()));
Pawin Vongmasa36653902018-11-15 00:10:25 -0800780}
781
782// ConstGraphicBlockBuffer
783
784// static
785sp<ConstGraphicBlockBuffer> ConstGraphicBlockBuffer::Allocate(
786 const sp<AMessage> &format,
787 const std::shared_ptr<C2Buffer> &buffer,
788 std::function<sp<ABuffer>(size_t)> alloc) {
789 if (!buffer
790 || buffer->data().type() != C2BufferData::GRAPHIC
791 || buffer->data().graphicBlocks().size() != 1u) {
792 ALOGD("C2Buffer precond fail");
793 return nullptr;
794 }
My Name6bd9a7d2022-03-25 12:37:58 -0700795 ATRACE_BEGIN("ConstGraphicBlockBuffer::Allocate block->map()");
Pawin Vongmasa36653902018-11-15 00:10:25 -0800796 std::unique_ptr<const C2GraphicView> view(std::make_unique<const C2GraphicView>(
797 buffer->data().graphicBlocks()[0].map().get()));
My Name6bd9a7d2022-03-25 12:37:58 -0700798 ATRACE_END();
Pawin Vongmasa36653902018-11-15 00:10:25 -0800799 std::unique_ptr<const C2GraphicView> holder;
800
Wonsik Kimd79ee1f2020-08-27 17:41:56 -0700801 GraphicView2MediaImageConverter converter(*view, format, false /* copy */);
Pawin Vongmasa36653902018-11-15 00:10:25 -0800802 if (converter.initCheck() != OK) {
803 ALOGD("Converter init failed: %d", converter.initCheck());
804 return nullptr;
805 }
806 bool wrapped = true;
807 sp<ABuffer> aBuffer = converter.wrap();
808 if (aBuffer == nullptr) {
809 aBuffer = alloc(converter.backBufferSize());
810 if (!converter.setBackBuffer(aBuffer)) {
811 ALOGD("Converter failed to set back buffer");
812 return nullptr;
813 }
814 wrapped = false;
815 converter.copyToMediaImage();
816 // We don't need the view.
817 holder = std::move(view);
818 }
819 return new ConstGraphicBlockBuffer(
820 format,
821 aBuffer,
822 std::move(view),
823 buffer,
824 converter.imageData(),
825 wrapped);
826}
827
828// static
829sp<ConstGraphicBlockBuffer> ConstGraphicBlockBuffer::AllocateEmpty(
830 const sp<AMessage> &format,
831 std::function<sp<ABuffer>(size_t)> alloc) {
832 int32_t width, height;
833 if (!format->findInt32("width", &width)
834 || !format->findInt32("height", &height)) {
835 ALOGD("format had no width / height");
836 return nullptr;
837 }
Wonsik Kim08a8a2b2021-05-10 19:03:47 -0700838 int32_t colorFormat = COLOR_FormatYUV420Flexible;
839 int32_t bpp = 12; // 8(Y) + 2(U) + 2(V)
840 if (format->findInt32(KEY_COLOR_FORMAT, &colorFormat)) {
841 if (colorFormat == COLOR_FormatYUVP010) {
842 bpp = 24; // 16(Y) + 4(U) + 4(V)
843 }
844 }
845 sp<ABuffer> aBuffer(alloc(align(width, 16) * align(height, 16) * bpp / 8));
Jiajia Cong9ed0ab22020-12-02 12:00:49 +0800846 if (aBuffer == nullptr) {
847 ALOGD("%s: failed to allocate buffer", __func__);
848 return nullptr;
849 }
Pawin Vongmasa36653902018-11-15 00:10:25 -0800850 return new ConstGraphicBlockBuffer(
851 format,
852 aBuffer,
853 nullptr,
854 nullptr,
855 nullptr,
856 false);
857}
858
859ConstGraphicBlockBuffer::ConstGraphicBlockBuffer(
860 const sp<AMessage> &format,
861 const sp<ABuffer> &aBuffer,
862 std::unique_ptr<const C2GraphicView> &&view,
863 const std::shared_ptr<C2Buffer> &buffer,
864 const sp<ABuffer> &imageData,
865 bool wrapped)
866 : Codec2Buffer(format, aBuffer),
867 mView(std::move(view)),
868 mBufferRef(buffer),
869 mWrapped(wrapped) {
Wonsik Kimc48ddcf2019-02-11 16:16:57 -0800870 setImageData(imageData);
Pawin Vongmasa36653902018-11-15 00:10:25 -0800871}
872
873std::shared_ptr<C2Buffer> ConstGraphicBlockBuffer::asC2Buffer() {
Wonsik Kimf9b32122020-04-02 11:30:17 -0700874 return mBufferRef;
875}
876
877void ConstGraphicBlockBuffer::clearC2BufferRefs() {
Pawin Vongmasa36653902018-11-15 00:10:25 -0800878 mView.reset();
Wonsik Kimf9b32122020-04-02 11:30:17 -0700879 mBufferRef.reset();
Pawin Vongmasa36653902018-11-15 00:10:25 -0800880}
881
882bool ConstGraphicBlockBuffer::canCopy(const std::shared_ptr<C2Buffer> &buffer) const {
883 if (mWrapped || mBufferRef) {
884 ALOGD("ConstGraphicBlockBuffer::canCopy: %swrapped ; buffer ref %s",
885 mWrapped ? "" : "not ", mBufferRef ? "exists" : "doesn't exist");
886 return false;
887 }
888 if (!buffer) {
889 // Nothing to copy, so we can copy by doing nothing.
890 return true;
891 }
892 if (buffer->data().type() != C2BufferData::GRAPHIC) {
893 ALOGD("ConstGraphicBlockBuffer::canCopy: buffer precondition unsatisfied");
894 return false;
895 }
896 if (buffer->data().graphicBlocks().size() == 0) {
897 return true;
898 } else if (buffer->data().graphicBlocks().size() != 1u) {
899 ALOGD("ConstGraphicBlockBuffer::canCopy: too many blocks");
900 return false;
901 }
902
My Name6bd9a7d2022-03-25 12:37:58 -0700903 ATRACE_BEGIN("ConstGraphicBlockBuffer::canCopy block->map()");
Pawin Vongmasa36653902018-11-15 00:10:25 -0800904 GraphicView2MediaImageConverter converter(
Wonsik Kimd79ee1f2020-08-27 17:41:56 -0700905 buffer->data().graphicBlocks()[0].map().get(),
906 // FIXME: format() is not const, but we cannot change it, so do a const cast here
907 const_cast<ConstGraphicBlockBuffer *>(this)->format(),
908 true /* copy */);
My Name6bd9a7d2022-03-25 12:37:58 -0700909 ATRACE_END();
Pawin Vongmasa36653902018-11-15 00:10:25 -0800910 if (converter.initCheck() != OK) {
911 ALOGD("ConstGraphicBlockBuffer::canCopy: converter init failed: %d", converter.initCheck());
912 return false;
913 }
914 if (converter.backBufferSize() > capacity()) {
915 ALOGD("ConstGraphicBlockBuffer::canCopy: insufficient capacity: req %u has %zu",
916 converter.backBufferSize(), capacity());
917 return false;
918 }
919 return true;
920}
921
922bool ConstGraphicBlockBuffer::copy(const std::shared_ptr<C2Buffer> &buffer) {
923 if (!buffer || buffer->data().graphicBlocks().size() == 0) {
924 setRange(0, 0);
925 return true;
926 }
Pawin Vongmasa36653902018-11-15 00:10:25 -0800927
928 GraphicView2MediaImageConverter converter(
Wonsik Kimd79ee1f2020-08-27 17:41:56 -0700929 buffer->data().graphicBlocks()[0].map().get(), format(), true /* copy */);
Pawin Vongmasa36653902018-11-15 00:10:25 -0800930 if (converter.initCheck() != OK) {
931 ALOGD("ConstGraphicBlockBuffer::copy: converter init failed: %d", converter.initCheck());
932 return false;
933 }
934 sp<ABuffer> aBuffer = new ABuffer(base(), capacity());
935 if (!converter.setBackBuffer(aBuffer)) {
936 ALOGD("ConstGraphicBlockBuffer::copy: set back buffer failed");
937 return false;
938 }
Pin-chih Lin1971e2c2019-04-15 19:36:26 +0800939 setRange(0, aBuffer->size()); // align size info
Pawin Vongmasa36653902018-11-15 00:10:25 -0800940 converter.copyToMediaImage();
941 setImageData(converter.imageData());
942 mBufferRef = buffer;
943 return true;
944}
945
946// EncryptedLinearBlockBuffer
947
948EncryptedLinearBlockBuffer::EncryptedLinearBlockBuffer(
949 const sp<AMessage> &format,
950 const std::shared_ptr<C2LinearBlock> &block,
951 const sp<IMemory> &memory,
952 int32_t heapSeqNum)
Ytai Ben-Tsvi7dd39722019-09-05 15:14:30 -0700953 // TODO: Using unsecurePointer() has some associated security pitfalls
954 // (see declaration for details).
955 // Either document why it is safe in this case or address the
956 // issue (e.g. by copying).
957 : Codec2Buffer(format, new ABuffer(memory->unsecurePointer(), memory->size())),
Pawin Vongmasa36653902018-11-15 00:10:25 -0800958 mBlock(block),
959 mMemory(memory),
960 mHeapSeqNum(heapSeqNum) {
961}
962
963std::shared_ptr<C2Buffer> EncryptedLinearBlockBuffer::asC2Buffer() {
964 return C2Buffer::CreateLinearBuffer(mBlock->share(offset(), size(), C2Fence()));
965}
966
967void EncryptedLinearBlockBuffer::fillSourceBuffer(
Robert Shih895fba92019-07-16 16:29:44 -0700968 hardware::drm::V1_0::SharedBuffer *source) {
969 BufferChannelBase::IMemoryToSharedBuffer(mMemory, mHeapSeqNum, source);
Pawin Vongmasa36653902018-11-15 00:10:25 -0800970}
971
972void EncryptedLinearBlockBuffer::fillSourceBuffer(
973 hardware::cas::native::V1_0::SharedBuffer *source) {
974 ssize_t offset;
975 size_t size;
976
977 mHidlMemory = hardware::fromHeap(mMemory->getMemory(&offset, &size));
978 source->heapBase = *mHidlMemory;
979 source->offset = offset;
980 source->size = size;
981}
982
983bool EncryptedLinearBlockBuffer::copyDecryptedContent(
984 const sp<IMemory> &decrypted, size_t length) {
985 C2WriteView view = mBlock->map().get();
986 if (view.error() != C2_OK) {
987 return false;
988 }
989 if (view.size() < length) {
990 return false;
991 }
Ytai Ben-Tsvi7dd39722019-09-05 15:14:30 -0700992 memcpy(view.data(), decrypted->unsecurePointer(), length);
Pawin Vongmasa36653902018-11-15 00:10:25 -0800993 return true;
994}
995
996bool EncryptedLinearBlockBuffer::copyDecryptedContentFromMemory(size_t length) {
997 return copyDecryptedContent(mMemory, length);
998}
999
1000native_handle_t *EncryptedLinearBlockBuffer::handle() const {
1001 return const_cast<native_handle_t *>(mBlock->handle());
1002}
1003
Wonsik Kima79c5522022-01-18 16:29:24 -08001004using ::aidl::android::hardware::graphics::common::Cta861_3;
Hongguangfc1478a2022-07-20 22:56:06 -07001005using ::aidl::android::hardware::graphics::common::Dataspace;
Wonsik Kima79c5522022-01-18 16:29:24 -08001006using ::aidl::android::hardware::graphics::common::Smpte2086;
1007
1008using ::android::gralloc4::MetadataType_Cta861_3;
Hongguangfc1478a2022-07-20 22:56:06 -07001009using ::android::gralloc4::MetadataType_Dataspace;
Wonsik Kima79c5522022-01-18 16:29:24 -08001010using ::android::gralloc4::MetadataType_Smpte2086;
1011using ::android::gralloc4::MetadataType_Smpte2094_40;
1012
1013using ::android::hardware::Return;
1014using ::android::hardware::hidl_vec;
1015
1016using Error4 = ::android::hardware::graphics::mapper::V4_0::Error;
1017using IMapper4 = ::android::hardware::graphics::mapper::V4_0::IMapper;
1018
1019namespace {
1020
1021sp<IMapper4> GetMapper4() {
Wonsik Kim89814312023-02-01 10:46:16 -08001022 static ::android::base::NoDestructor<sp<IMapper4>> sMapper(IMapper4::getService());
1023 return *sMapper;
Wonsik Kima79c5522022-01-18 16:29:24 -08001024}
1025
Wonsik Kime2aa2402022-04-08 14:07:14 -07001026class Gralloc4Buffer {
Wonsik Kima79c5522022-01-18 16:29:24 -08001027public:
Wonsik Kime2aa2402022-04-08 14:07:14 -07001028 Gralloc4Buffer(const C2Handle *const handle) : mBuffer(nullptr) {
1029 sp<IMapper4> mapper = GetMapper4();
1030 if (!mapper) {
1031 return;
1032 }
1033 // Unwrap raw buffer handle from the C2Handle
1034 native_handle_t *nh = UnwrapNativeCodec2GrallocHandle(handle);
1035 if (!nh) {
1036 return;
1037 }
1038 // Import the raw handle so IMapper can use the buffer. The imported
1039 // handle must be freed when the client is done with the buffer.
1040 mapper->importBuffer(
1041 hardware::hidl_handle(nh),
1042 [&](const Error4 &error, void *buffer) {
1043 if (error == Error4::NONE) {
1044 mBuffer = buffer;
1045 }
1046 });
1047
1048 // TRICKY: UnwrapNativeCodec2GrallocHandle creates a new handle but
1049 // does not clone the fds. Thus we need to delete the handle
1050 // without closing it.
1051 native_handle_delete(nh);
1052 }
1053
1054 ~Gralloc4Buffer() {
1055 sp<IMapper4> mapper = GetMapper4();
1056 if (mapper && mBuffer) {
1057 // Free the imported buffer handle. This does not release the
1058 // underlying buffer itself.
1059 mapper->freeBuffer(mBuffer);
Wonsik Kima79c5522022-01-18 16:29:24 -08001060 }
1061 }
Wonsik Kime2aa2402022-04-08 14:07:14 -07001062
1063 void *get() const { return mBuffer; }
1064 operator bool() const { return (mBuffer != nullptr); }
Wonsik Kima79c5522022-01-18 16:29:24 -08001065private:
Wonsik Kime2aa2402022-04-08 14:07:14 -07001066 void *mBuffer;
Wonsik Kima79c5522022-01-18 16:29:24 -08001067};
1068
1069} // namspace
1070
1071c2_status_t GetHdrMetadataFromGralloc4Handle(
1072 const C2Handle *const handle,
1073 std::shared_ptr<C2StreamHdrStaticMetadataInfo::input> *staticInfo,
1074 std::shared_ptr<C2StreamHdrDynamicMetadataInfo::input> *dynamicInfo) {
1075 c2_status_t err = C2_OK;
Wonsik Kima79c5522022-01-18 16:29:24 -08001076 sp<IMapper4> mapper = GetMapper4();
Wonsik Kime2aa2402022-04-08 14:07:14 -07001077 Gralloc4Buffer buffer(handle);
1078 if (!mapper || !buffer) {
Wonsik Kima79c5522022-01-18 16:29:24 -08001079 // Gralloc4 not supported; nothing to do
1080 return err;
1081 }
1082 Error4 mapperErr = Error4::NONE;
1083 if (staticInfo) {
Wonsik Kime2aa2402022-04-08 14:07:14 -07001084 ALOGV("Grabbing static HDR info from gralloc4 metadata");
Wonsik Kima79c5522022-01-18 16:29:24 -08001085 staticInfo->reset(new C2StreamHdrStaticMetadataInfo::input(0u));
1086 memset(&(*staticInfo)->mastering, 0, sizeof((*staticInfo)->mastering));
1087 (*staticInfo)->maxCll = 0;
1088 (*staticInfo)->maxFall = 0;
1089 IMapper4::get_cb cb = [&mapperErr, staticInfo](Error4 err, const hidl_vec<uint8_t> &vec) {
1090 mapperErr = err;
1091 if (err != Error4::NONE) {
1092 return;
1093 }
1094
1095 std::optional<Smpte2086> smpte2086;
1096 gralloc4::decodeSmpte2086(vec, &smpte2086);
1097 if (smpte2086) {
1098 (*staticInfo)->mastering.red.x = smpte2086->primaryRed.x;
1099 (*staticInfo)->mastering.red.y = smpte2086->primaryRed.y;
1100 (*staticInfo)->mastering.green.x = smpte2086->primaryGreen.x;
1101 (*staticInfo)->mastering.green.y = smpte2086->primaryGreen.y;
1102 (*staticInfo)->mastering.blue.x = smpte2086->primaryBlue.x;
1103 (*staticInfo)->mastering.blue.y = smpte2086->primaryBlue.y;
1104 (*staticInfo)->mastering.white.x = smpte2086->whitePoint.x;
1105 (*staticInfo)->mastering.white.y = smpte2086->whitePoint.y;
1106
1107 (*staticInfo)->mastering.maxLuminance = smpte2086->maxLuminance;
1108 (*staticInfo)->mastering.minLuminance = smpte2086->minLuminance;
1109 } else {
1110 mapperErr = Error4::BAD_VALUE;
1111 }
1112 };
Wonsik Kime2aa2402022-04-08 14:07:14 -07001113 Return<void> ret = mapper->get(buffer.get(), MetadataType_Smpte2086, cb);
Wonsik Kima79c5522022-01-18 16:29:24 -08001114 if (!ret.isOk()) {
1115 err = C2_REFUSED;
1116 } else if (mapperErr != Error4::NONE) {
1117 err = C2_CORRUPTED;
1118 }
1119 cb = [&mapperErr, staticInfo](Error4 err, const hidl_vec<uint8_t> &vec) {
1120 mapperErr = err;
1121 if (err != Error4::NONE) {
1122 return;
1123 }
1124
1125 std::optional<Cta861_3> cta861_3;
1126 gralloc4::decodeCta861_3(vec, &cta861_3);
1127 if (cta861_3) {
1128 (*staticInfo)->maxCll = cta861_3->maxContentLightLevel;
1129 (*staticInfo)->maxFall = cta861_3->maxFrameAverageLightLevel;
1130 } else {
1131 mapperErr = Error4::BAD_VALUE;
1132 }
1133 };
Wonsik Kime2aa2402022-04-08 14:07:14 -07001134 ret = mapper->get(buffer.get(), MetadataType_Cta861_3, cb);
Wonsik Kima79c5522022-01-18 16:29:24 -08001135 if (!ret.isOk()) {
1136 err = C2_REFUSED;
1137 } else if (mapperErr != Error4::NONE) {
1138 err = C2_CORRUPTED;
1139 }
1140 }
1141 if (dynamicInfo) {
Wonsik Kime2aa2402022-04-08 14:07:14 -07001142 ALOGV("Grabbing dynamic HDR info from gralloc4 metadata");
Wonsik Kima79c5522022-01-18 16:29:24 -08001143 dynamicInfo->reset();
1144 IMapper4::get_cb cb = [&mapperErr, dynamicInfo](Error4 err, const hidl_vec<uint8_t> &vec) {
1145 mapperErr = err;
1146 if (err != Error4::NONE) {
1147 return;
1148 }
1149 if (!dynamicInfo) {
1150 return;
1151 }
1152 *dynamicInfo = C2StreamHdrDynamicMetadataInfo::input::AllocShared(
1153 vec.size(), 0u, C2Config::HDR_DYNAMIC_METADATA_TYPE_SMPTE_2094_40);
1154 memcpy((*dynamicInfo)->m.data, vec.data(), vec.size());
1155 };
Wonsik Kime2aa2402022-04-08 14:07:14 -07001156 Return<void> ret = mapper->get(buffer.get(), MetadataType_Smpte2094_40, cb);
Wonsik Kima79c5522022-01-18 16:29:24 -08001157 if (!ret.isOk() || mapperErr != Error4::NONE) {
1158 dynamicInfo->reset();
1159 }
1160 }
1161
1162 return err;
1163}
1164
Hongguangfc1478a2022-07-20 22:56:06 -07001165c2_status_t SetMetadataToGralloc4Handle(
1166 android_dataspace_t dataSpace,
Wonsik Kima79c5522022-01-18 16:29:24 -08001167 const std::shared_ptr<const C2StreamHdrStaticMetadataInfo::output> &staticInfo,
1168 const std::shared_ptr<const C2StreamHdrDynamicMetadataInfo::output> &dynamicInfo,
1169 const C2Handle *const handle) {
1170 c2_status_t err = C2_OK;
Wonsik Kima79c5522022-01-18 16:29:24 -08001171 sp<IMapper4> mapper = GetMapper4();
Wonsik Kime2aa2402022-04-08 14:07:14 -07001172 Gralloc4Buffer buffer(handle);
1173 if (!mapper || !buffer) {
Wonsik Kima79c5522022-01-18 16:29:24 -08001174 // Gralloc4 not supported; nothing to do
1175 return err;
1176 }
Hongguangfc1478a2022-07-20 22:56:06 -07001177 {
1178 hidl_vec<uint8_t> metadata;
1179 if (gralloc4::encodeDataspace(static_cast<Dataspace>(dataSpace), &metadata) == OK) {
1180 Return<Error4> ret = mapper->set(buffer.get(), MetadataType_Dataspace, metadata);
1181 if (!ret.isOk()) {
1182 err = C2_REFUSED;
1183 } else if (ret != Error4::NONE) {
1184 err = C2_CORRUPTED;
1185 }
1186 }
1187 }
Wonsik Kima79c5522022-01-18 16:29:24 -08001188 if (staticInfo && *staticInfo) {
Wonsik Kime2aa2402022-04-08 14:07:14 -07001189 ALOGV("Setting static HDR info as gralloc4 metadata");
Wonsik Kima79c5522022-01-18 16:29:24 -08001190 std::optional<Smpte2086> smpte2086 = Smpte2086{
1191 {staticInfo->mastering.red.x, staticInfo->mastering.red.y},
1192 {staticInfo->mastering.green.x, staticInfo->mastering.green.y},
1193 {staticInfo->mastering.blue.x, staticInfo->mastering.blue.y},
1194 {staticInfo->mastering.white.x, staticInfo->mastering.white.y},
1195 staticInfo->mastering.maxLuminance,
1196 staticInfo->mastering.minLuminance,
1197 };
1198 hidl_vec<uint8_t> vec;
Wonsik Kime2aa2402022-04-08 14:07:14 -07001199 if (0.0 <= smpte2086->primaryRed.x && smpte2086->primaryRed.x <= 1.0
1200 && 0.0 <= smpte2086->primaryRed.y && smpte2086->primaryRed.y <= 1.0
1201 && 0.0 <= smpte2086->primaryGreen.x && smpte2086->primaryGreen.x <= 1.0
1202 && 0.0 <= smpte2086->primaryGreen.y && smpte2086->primaryGreen.y <= 1.0
1203 && 0.0 <= smpte2086->primaryBlue.x && smpte2086->primaryBlue.x <= 1.0
1204 && 0.0 <= smpte2086->primaryBlue.y && smpte2086->primaryBlue.y <= 1.0
1205 && 0.0 <= smpte2086->whitePoint.x && smpte2086->whitePoint.x <= 1.0
1206 && 0.0 <= smpte2086->whitePoint.y && smpte2086->whitePoint.y <= 1.0
1207 && 0.0 <= smpte2086->maxLuminance && 0.0 <= smpte2086->minLuminance
1208 && gralloc4::encodeSmpte2086(smpte2086, &vec) == OK) {
1209 Return<Error4> ret = mapper->set(buffer.get(), MetadataType_Smpte2086, vec);
Wonsik Kima79c5522022-01-18 16:29:24 -08001210 if (!ret.isOk()) {
1211 err = C2_REFUSED;
1212 } else if (ret != Error4::NONE) {
1213 err = C2_CORRUPTED;
1214 }
1215 }
1216 std::optional<Cta861_3> cta861_3 = Cta861_3{
1217 staticInfo->maxCll,
1218 staticInfo->maxFall,
1219 };
Wonsik Kime2aa2402022-04-08 14:07:14 -07001220 if (0.0 <= cta861_3->maxContentLightLevel && 0.0 <= cta861_3->maxFrameAverageLightLevel
1221 && gralloc4::encodeCta861_3(cta861_3, &vec) == OK) {
1222 Return<Error4> ret = mapper->set(buffer.get(), MetadataType_Cta861_3, vec);
Wonsik Kima79c5522022-01-18 16:29:24 -08001223 if (!ret.isOk()) {
1224 err = C2_REFUSED;
1225 } else if (ret != Error4::NONE) {
1226 err = C2_CORRUPTED;
1227 }
1228 }
1229 }
Wonsik Kime2aa2402022-04-08 14:07:14 -07001230 if (dynamicInfo && *dynamicInfo && dynamicInfo->flexCount() > 0) {
1231 ALOGV("Setting dynamic HDR info as gralloc4 metadata");
Wonsik Kima79c5522022-01-18 16:29:24 -08001232 std::optional<IMapper4::MetadataType> metadataType;
1233 switch (dynamicInfo->m.type_) {
1234 case C2Config::HDR_DYNAMIC_METADATA_TYPE_SMPTE_2094_10:
1235 // TODO
1236 break;
1237 case C2Config::HDR_DYNAMIC_METADATA_TYPE_SMPTE_2094_40:
1238 metadataType = MetadataType_Smpte2094_40;
1239 break;
1240 }
Taehwan Kim3f3d1ac2022-05-12 10:40:29 +09001241
Wonsik Kima79c5522022-01-18 16:29:24 -08001242 if (metadataType) {
Taehwan Kim3f3d1ac2022-05-12 10:40:29 +09001243 std::vector<uint8_t> smpte2094_40;
1244 smpte2094_40.resize(dynamicInfo->flexCount());
1245 memcpy(smpte2094_40.data(), dynamicInfo->m.data, dynamicInfo->flexCount());
1246
1247 hidl_vec<uint8_t> vec;
1248 if (gralloc4::encodeSmpte2094_40({ smpte2094_40 }, &vec) == OK) {
1249 Return<Error4> ret = mapper->set(buffer.get(), *metadataType, vec);
1250 if (!ret.isOk()) {
1251 err = C2_REFUSED;
1252 } else if (ret != Error4::NONE) {
1253 err = C2_CORRUPTED;
1254 }
Wonsik Kima79c5522022-01-18 16:29:24 -08001255 }
1256 } else {
1257 err = C2_BAD_VALUE;
1258 }
1259 }
1260
1261 return err;
1262}
1263
Pawin Vongmasa36653902018-11-15 00:10:25 -08001264} // namespace android