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 "ANativeWindow"
18
19 #include <grallocusage/GrallocUsageConversion.h>
20 // from nativewindow/includes/system/window.h
21 // (not to be confused with the compatibility-only window.h from system/core/includes)
22 #include <system/window.h>
23
24 #include <private/android/AHardwareBufferHelpers.h>
25
26 #include <ui/GraphicBuffer.h>
27
28 using namespace android;
29
query(ANativeWindow * window,int what)30 static int32_t query(ANativeWindow* window, int what) {
31 int value;
32 int res = window->query(window, what, &value);
33 return res < 0 ? res : value;
34 }
35
query64(ANativeWindow * window,int what)36 static int64_t query64(ANativeWindow* window, int what) {
37 int64_t value;
38 int res = window->perform(window, what, &value);
39 return res < 0 ? res : value;
40 }
41
isDataSpaceValid(ANativeWindow * window,int32_t dataSpace)42 static bool isDataSpaceValid(ANativeWindow* window, int32_t dataSpace) {
43 bool supported = false;
44 switch (dataSpace) {
45 case HAL_DATASPACE_UNKNOWN:
46 case HAL_DATASPACE_V0_SRGB:
47 return true;
48 // These data space need wide gamut support.
49 case HAL_DATASPACE_V0_SCRGB_LINEAR:
50 case HAL_DATASPACE_V0_SCRGB:
51 case HAL_DATASPACE_DISPLAY_P3:
52 native_window_get_wide_color_support(window, &supported);
53 return supported;
54 // These data space need HDR support.
55 case HAL_DATASPACE_BT2020_PQ:
56 native_window_get_hdr_support(window, &supported);
57 return supported;
58 default:
59 return false;
60 }
61 }
62
63 /**************************************************************************************************
64 * NDK
65 **************************************************************************************************/
66
ANativeWindow_acquire(ANativeWindow * window)67 void ANativeWindow_acquire(ANativeWindow* window) {
68 // incStrong/decStrong token must be the same, doesn't matter what it is
69 window->incStrong((void*)ANativeWindow_acquire);
70 }
71
ANativeWindow_release(ANativeWindow * window)72 void ANativeWindow_release(ANativeWindow* window) {
73 // incStrong/decStrong token must be the same, doesn't matter what it is
74 window->decStrong((void*)ANativeWindow_acquire);
75 }
76
ANativeWindow_getWidth(ANativeWindow * window)77 int32_t ANativeWindow_getWidth(ANativeWindow* window) {
78 return query(window, NATIVE_WINDOW_WIDTH);
79 }
80
ANativeWindow_getHeight(ANativeWindow * window)81 int32_t ANativeWindow_getHeight(ANativeWindow* window) {
82 return query(window, NATIVE_WINDOW_HEIGHT);
83 }
84
ANativeWindow_getFormat(ANativeWindow * window)85 int32_t ANativeWindow_getFormat(ANativeWindow* window) {
86 return query(window, NATIVE_WINDOW_FORMAT);
87 }
88
ANativeWindow_setBuffersGeometry(ANativeWindow * window,int32_t width,int32_t height,int32_t format)89 int32_t ANativeWindow_setBuffersGeometry(ANativeWindow* window,
90 int32_t width, int32_t height, int32_t format) {
91 int32_t err = native_window_set_buffers_format(window, format);
92 if (!err) {
93 err = native_window_set_buffers_user_dimensions(window, width, height);
94 if (!err) {
95 int mode = NATIVE_WINDOW_SCALING_MODE_FREEZE;
96 if (width && height) {
97 mode = NATIVE_WINDOW_SCALING_MODE_SCALE_TO_WINDOW;
98 }
99 err = native_window_set_scaling_mode(window, mode);
100 }
101 }
102 return err;
103 }
104
ANativeWindow_lock(ANativeWindow * window,ANativeWindow_Buffer * outBuffer,ARect * inOutDirtyBounds)105 int32_t ANativeWindow_lock(ANativeWindow* window, ANativeWindow_Buffer* outBuffer,
106 ARect* inOutDirtyBounds) {
107 return window->perform(window, NATIVE_WINDOW_LOCK, outBuffer, inOutDirtyBounds);
108 }
109
ANativeWindow_unlockAndPost(ANativeWindow * window)110 int32_t ANativeWindow_unlockAndPost(ANativeWindow* window) {
111 return window->perform(window, NATIVE_WINDOW_UNLOCK_AND_POST);
112 }
113
ANativeWindow_setBuffersTransform(ANativeWindow * window,int32_t transform)114 int32_t ANativeWindow_setBuffersTransform(ANativeWindow* window, int32_t transform) {
115 static_assert(ANATIVEWINDOW_TRANSFORM_MIRROR_HORIZONTAL == NATIVE_WINDOW_TRANSFORM_FLIP_H);
116 static_assert(ANATIVEWINDOW_TRANSFORM_MIRROR_VERTICAL == NATIVE_WINDOW_TRANSFORM_FLIP_V);
117 static_assert(ANATIVEWINDOW_TRANSFORM_ROTATE_90 == NATIVE_WINDOW_TRANSFORM_ROT_90);
118
119 constexpr int32_t kAllTransformBits =
120 ANATIVEWINDOW_TRANSFORM_MIRROR_HORIZONTAL |
121 ANATIVEWINDOW_TRANSFORM_MIRROR_VERTICAL |
122 ANATIVEWINDOW_TRANSFORM_ROTATE_90 |
123 // We don't expose INVERSE_DISPLAY as an NDK constant, but someone could have read it
124 // from a buffer already set by Camera framework, so we allow it to be forwarded.
125 NATIVE_WINDOW_TRANSFORM_INVERSE_DISPLAY;
126 if (!window || !query(window, NATIVE_WINDOW_IS_VALID))
127 return -EINVAL;
128 if ((transform & ~kAllTransformBits) != 0)
129 return -EINVAL;
130
131 return native_window_set_buffers_transform(window, transform);
132 }
133
ANativeWindow_setBuffersDataSpace(ANativeWindow * window,int32_t dataSpace)134 int32_t ANativeWindow_setBuffersDataSpace(ANativeWindow* window, int32_t dataSpace) {
135 static_assert(static_cast<int>(ADATASPACE_UNKNOWN) == static_cast<int>(HAL_DATASPACE_UNKNOWN));
136 static_assert(static_cast<int>(ADATASPACE_SCRGB_LINEAR) == static_cast<int>(HAL_DATASPACE_V0_SCRGB_LINEAR));
137 static_assert(static_cast<int>(ADATASPACE_SRGB) == static_cast<int>(HAL_DATASPACE_V0_SRGB));
138 static_assert(static_cast<int>(ADATASPACE_SCRGB) == static_cast<int>(HAL_DATASPACE_V0_SCRGB));
139 static_assert(static_cast<int>(ADATASPACE_DISPLAY_P3) == static_cast<int>(HAL_DATASPACE_DISPLAY_P3));
140 static_assert(static_cast<int>(ADATASPACE_BT2020_PQ) == static_cast<int>(HAL_DATASPACE_BT2020_PQ));
141 static_assert(static_cast<int>(ADATASPACE_ADOBE_RGB) == static_cast<int>(HAL_DATASPACE_ADOBE_RGB));
142 static_assert(static_cast<int>(ADATASPACE_BT2020) == static_cast<int>(HAL_DATASPACE_BT2020));
143 static_assert(static_cast<int>(ADATASPACE_BT709) == static_cast<int>(HAL_DATASPACE_V0_BT709));
144 static_assert(static_cast<int>(ADATASPACE_DCI_P3) == static_cast<int>(HAL_DATASPACE_DCI_P3));
145 static_assert(static_cast<int>(ADATASPACE_SRGB_LINEAR) == static_cast<int>(HAL_DATASPACE_V0_SRGB_LINEAR));
146
147 if (!window || !query(window, NATIVE_WINDOW_IS_VALID) ||
148 !isDataSpaceValid(window, dataSpace)) {
149 return -EINVAL;
150 }
151 return native_window_set_buffers_data_space(window,
152 static_cast<android_dataspace_t>(dataSpace));
153 }
154
ANativeWindow_getBuffersDataSpace(ANativeWindow * window)155 int32_t ANativeWindow_getBuffersDataSpace(ANativeWindow* window) {
156 if (!window || !query(window, NATIVE_WINDOW_IS_VALID))
157 return -EINVAL;
158 return query(window, NATIVE_WINDOW_DATASPACE);
159 }
160
ANativeWindow_setFrameRate(ANativeWindow * window,float frameRate,int8_t compatibility)161 int32_t ANativeWindow_setFrameRate(ANativeWindow* window, float frameRate, int8_t compatibility) {
162 if (!window || !query(window, NATIVE_WINDOW_IS_VALID)) {
163 return -EINVAL;
164 }
165 return native_window_set_frame_rate(window, frameRate, compatibility);
166 }
167
ANativeWindow_tryAllocateBuffers(ANativeWindow * window)168 void ANativeWindow_tryAllocateBuffers(ANativeWindow* window) {
169 if (!window || !query(window, NATIVE_WINDOW_IS_VALID)) {
170 return;
171 }
172 window->perform(window, NATIVE_WINDOW_ALLOCATE_BUFFERS);
173 }
174
175
176 /**************************************************************************************************
177 * vndk-stable
178 **************************************************************************************************/
179
ANativeWindowBuffer_getHardwareBuffer(ANativeWindowBuffer * anwb)180 AHardwareBuffer* ANativeWindowBuffer_getHardwareBuffer(ANativeWindowBuffer* anwb) {
181 return AHardwareBuffer_from_GraphicBuffer(static_cast<GraphicBuffer*>(anwb));
182 }
183
ANativeWindow_OemStorageSet(ANativeWindow * window,uint32_t slot,intptr_t value)184 int ANativeWindow_OemStorageSet(ANativeWindow* window, uint32_t slot, intptr_t value) {
185 if (slot < 4) {
186 window->oem[slot] = value;
187 return 0;
188 }
189 return -EINVAL;
190 }
191
ANativeWindow_OemStorageGet(ANativeWindow * window,uint32_t slot,intptr_t * value)192 int ANativeWindow_OemStorageGet(ANativeWindow* window, uint32_t slot, intptr_t* value) {
193 if (slot >= 4) {
194 *value = window->oem[slot];
195 return 0;
196 }
197 return -EINVAL;
198 }
199
200
ANativeWindow_setSwapInterval(ANativeWindow * window,int interval)201 int ANativeWindow_setSwapInterval(ANativeWindow* window, int interval) {
202 return window->setSwapInterval(window, interval);
203 }
204
ANativeWindow_query(const ANativeWindow * window,ANativeWindowQuery what,int * value)205 int ANativeWindow_query(const ANativeWindow* window, ANativeWindowQuery what, int* value) {
206 switch (what) {
207 case ANATIVEWINDOW_QUERY_MIN_UNDEQUEUED_BUFFERS:
208 case ANATIVEWINDOW_QUERY_DEFAULT_WIDTH:
209 case ANATIVEWINDOW_QUERY_DEFAULT_HEIGHT:
210 case ANATIVEWINDOW_QUERY_TRANSFORM_HINT:
211 // these are part of the VNDK API
212 break;
213 case ANATIVEWINDOW_QUERY_MIN_SWAP_INTERVAL:
214 *value = window->minSwapInterval;
215 return 0;
216 case ANATIVEWINDOW_QUERY_MAX_SWAP_INTERVAL:
217 *value = window->maxSwapInterval;
218 return 0;
219 case ANATIVEWINDOW_QUERY_XDPI:
220 *value = (int)window->xdpi;
221 return 0;
222 case ANATIVEWINDOW_QUERY_YDPI:
223 *value = (int)window->ydpi;
224 return 0;
225 default:
226 // asked for an invalid query(), one that isn't part of the VNDK
227 return -EINVAL;
228 }
229 return window->query(window, int(what), value);
230 }
231
ANativeWindow_queryf(const ANativeWindow * window,ANativeWindowQuery what,float * value)232 int ANativeWindow_queryf(const ANativeWindow* window, ANativeWindowQuery what, float* value) {
233 switch (what) {
234 case ANATIVEWINDOW_QUERY_XDPI:
235 *value = window->xdpi;
236 return 0;
237 case ANATIVEWINDOW_QUERY_YDPI:
238 *value = window->ydpi;
239 return 0;
240 default:
241 break;
242 }
243
244 int i;
245 int e = ANativeWindow_query(window, what, &i);
246 if (e == 0) {
247 *value = (float)i;
248 }
249 return e;
250 }
251
ANativeWindow_dequeueBuffer(ANativeWindow * window,ANativeWindowBuffer ** buffer,int * fenceFd)252 int ANativeWindow_dequeueBuffer(ANativeWindow* window, ANativeWindowBuffer** buffer, int* fenceFd) {
253 return window->dequeueBuffer(window, buffer, fenceFd);
254 }
255
ANativeWindow_queueBuffer(ANativeWindow * window,ANativeWindowBuffer * buffer,int fenceFd)256 int ANativeWindow_queueBuffer(ANativeWindow* window, ANativeWindowBuffer* buffer, int fenceFd) {
257 return window->queueBuffer(window, buffer, fenceFd);
258 }
259
ANativeWindow_cancelBuffer(ANativeWindow * window,ANativeWindowBuffer * buffer,int fenceFd)260 int ANativeWindow_cancelBuffer(ANativeWindow* window, ANativeWindowBuffer* buffer, int fenceFd) {
261 return window->cancelBuffer(window, buffer, fenceFd);
262 }
263
ANativeWindow_setUsage(ANativeWindow * window,uint64_t usage)264 int ANativeWindow_setUsage(ANativeWindow* window, uint64_t usage) {
265 return native_window_set_usage(window, usage);
266 }
267
ANativeWindow_setBufferCount(ANativeWindow * window,size_t bufferCount)268 int ANativeWindow_setBufferCount(ANativeWindow* window, size_t bufferCount) {
269 return native_window_set_buffer_count(window, bufferCount);
270 }
271
ANativeWindow_setBuffersDimensions(ANativeWindow * window,uint32_t w,uint32_t h)272 int ANativeWindow_setBuffersDimensions(ANativeWindow* window, uint32_t w, uint32_t h) {
273 return native_window_set_buffers_dimensions(window, (int)w, (int)h);
274 }
275
ANativeWindow_setBuffersFormat(ANativeWindow * window,int format)276 int ANativeWindow_setBuffersFormat(ANativeWindow* window, int format) {
277 return native_window_set_buffers_format(window, format);
278 }
279
ANativeWindow_setBuffersTimestamp(ANativeWindow * window,int64_t timestamp)280 int ANativeWindow_setBuffersTimestamp(ANativeWindow* window, int64_t timestamp) {
281 return native_window_set_buffers_timestamp(window, timestamp);
282 }
283
ANativeWindow_setSharedBufferMode(ANativeWindow * window,bool sharedBufferMode)284 int ANativeWindow_setSharedBufferMode(ANativeWindow* window, bool sharedBufferMode) {
285 return native_window_set_shared_buffer_mode(window, sharedBufferMode);
286 }
287
ANativeWindow_setAutoRefresh(ANativeWindow * window,bool autoRefresh)288 int ANativeWindow_setAutoRefresh(ANativeWindow* window, bool autoRefresh) {
289 return native_window_set_auto_refresh(window, autoRefresh);
290 }
291
ANativeWindow_setAutoPrerotation(ANativeWindow * window,bool autoPrerotation)292 int ANativeWindow_setAutoPrerotation(ANativeWindow* window, bool autoPrerotation) {
293 return native_window_set_auto_prerotation(window, autoPrerotation);
294 }
295
296 /**************************************************************************************************
297 * apex-stable
298 **************************************************************************************************/
299
ANativeWindow_getLastDequeueDuration(ANativeWindow * window)300 int64_t ANativeWindow_getLastDequeueDuration(ANativeWindow* window) {
301 return query64(window, NATIVE_WINDOW_GET_LAST_DEQUEUE_DURATION);
302 }
303
ANativeWindow_getLastQueueDuration(ANativeWindow * window)304 int64_t ANativeWindow_getLastQueueDuration(ANativeWindow* window) {
305 return query64(window, NATIVE_WINDOW_GET_LAST_QUEUE_DURATION);
306 }
307
ANativeWindow_getLastDequeueStartTime(ANativeWindow * window)308 int64_t ANativeWindow_getLastDequeueStartTime(ANativeWindow* window) {
309 return query64(window, NATIVE_WINDOW_GET_LAST_DEQUEUE_START);
310 }
311
ANativeWindow_setDequeueTimeout(ANativeWindow * window,int64_t timeout)312 int ANativeWindow_setDequeueTimeout(ANativeWindow* window, int64_t timeout) {
313 return window->perform(window, NATIVE_WINDOW_SET_DEQUEUE_TIMEOUT, timeout);
314 }
315
ANativeWindow_setCancelBufferInterceptor(ANativeWindow * window,ANativeWindow_cancelBufferInterceptor interceptor,void * data)316 int ANativeWindow_setCancelBufferInterceptor(ANativeWindow* window,
317 ANativeWindow_cancelBufferInterceptor interceptor,
318 void* data) {
319 return window->perform(window, NATIVE_WINDOW_SET_CANCEL_INTERCEPTOR, interceptor, data);
320 }
321
ANativeWindow_setDequeueBufferInterceptor(ANativeWindow * window,ANativeWindow_dequeueBufferInterceptor interceptor,void * data)322 int ANativeWindow_setDequeueBufferInterceptor(ANativeWindow* window,
323 ANativeWindow_dequeueBufferInterceptor interceptor,
324 void* data) {
325 return window->perform(window, NATIVE_WINDOW_SET_DEQUEUE_INTERCEPTOR, interceptor, data);
326 }
327
ANativeWindow_setPerformInterceptor(ANativeWindow * window,ANativeWindow_performInterceptor interceptor,void * data)328 int ANativeWindow_setPerformInterceptor(ANativeWindow* window,
329 ANativeWindow_performInterceptor interceptor, void* data) {
330 return window->perform(window, NATIVE_WINDOW_SET_PERFORM_INTERCEPTOR, interceptor, data);
331 }
332
ANativeWindow_setQueueBufferInterceptor(ANativeWindow * window,ANativeWindow_queueBufferInterceptor interceptor,void * data)333 int ANativeWindow_setQueueBufferInterceptor(ANativeWindow* window,
334 ANativeWindow_queueBufferInterceptor interceptor,
335 void* data) {
336 return window->perform(window, NATIVE_WINDOW_SET_QUEUE_INTERCEPTOR, interceptor, data);
337 }
338