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Mathias Agopiana8a75162009-04-10 14:24:31 -07001/*
2 * Copyright (C) 2008 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
18#ifndef ANDROID_GRALLOC_INTERFACE_H
19#define ANDROID_GRALLOC_INTERFACE_H
20
21#include <cutils/native_handle.h>
22
23#include <hardware/hardware.h>
24
25#include <stdint.h>
26#include <sys/cdefs.h>
27#include <sys/types.h>
28
29__BEGIN_DECLS
30
31/**
32 * The id of this module
33 */
34#define GRALLOC_HARDWARE_MODULE_ID "gralloc"
35
36/**
37 * Name of the graphics device to open
38 */
39
40#define GRALLOC_HARDWARE_FB0 "fb0"
41#define GRALLOC_HARDWARE_GPU0 "gpu0"
42
43enum {
44 /* buffer is never read in software */
Mathias Agopian988b8bd2009-05-04 14:26:56 -070045 GRALLOC_USAGE_SW_READ_NEVER = 0x00000000,
Mathias Agopiana8a75162009-04-10 14:24:31 -070046 /* buffer is rarely read in software */
47 GRALLOC_USAGE_SW_READ_RARELY = 0x00000002,
48 /* buffer is often read in software */
49 GRALLOC_USAGE_SW_READ_OFTEN = 0x00000003,
50 /* mask for the software read values */
51 GRALLOC_USAGE_SW_READ_MASK = 0x0000000F,
52
53 /* buffer is never written in software */
Mathias Agopian988b8bd2009-05-04 14:26:56 -070054 GRALLOC_USAGE_SW_WRITE_NEVER = 0x00000000,
Mathias Agopiana8a75162009-04-10 14:24:31 -070055 /* buffer is never written in software */
56 GRALLOC_USAGE_SW_WRITE_RARELY = 0x00000020,
57 /* buffer is never written in software */
58 GRALLOC_USAGE_SW_WRITE_OFTEN = 0x00000030,
59 /* mask for the software write values */
60 GRALLOC_USAGE_SW_WRITE_MASK = 0x000000F0,
61
62 /* buffer will be used as an OpenGL ES texture */
63 GRALLOC_USAGE_HW_TEXTURE = 0x00000100,
64 /* buffer will be used as an OpenGL ES render target */
65 GRALLOC_USAGE_HW_RENDER = 0x00000200,
66 /* buffer will be used by the 2D hardware blitter */
67 GRALLOC_USAGE_HW_2D = 0x00000C00,
68 /* buffer will be used with the framebuffer device */
69 GRALLOC_USAGE_HW_FB = 0x00001000,
70 /* mask for the software usage bit-mask */
71 GRALLOC_USAGE_HW_MASK = 0x00001F00,
72};
73
Mathias Agopiana8a75162009-04-10 14:24:31 -070074/*****************************************************************************/
75
76typedef const native_handle* buffer_handle_t;
77
78/**
79 * Every hardware module must have a data structure named HAL_MODULE_INFO_SYM
80 * and the fields of this data structure must begin with hw_module_t
81 * followed by module specific information.
82 */
83struct gralloc_module_t {
84 struct hw_module_t common;
85
Mathias Agopiana8a75162009-04-10 14:24:31 -070086
Mathias Agopian988b8bd2009-05-04 14:26:56 -070087 /*
88 * (*registerBuffer)() must be called before a buffer_handle_t that has not
89 * been created with (*alloc_device_t::alloc)() can be used.
90 *
91 * This is intended to be used with buffer_handle_t's that have been
92 * received in this process through IPC.
93 *
94 * This function checks that the handle is indeed a valid one and prepares
95 * it for use with (*lock)() and (*unlock)().
96 *
97 * It is not necessary to call (*registerBuffer)() on a handle created
98 * with (*alloc_device_t::alloc)().
99 *
100 * returns an error if this buffer_handle_t is not valid.
101 */
102 int (*registerBuffer)(struct gralloc_module_t const* module,
103 buffer_handle_t handle);
Mathias Agopiana8a75162009-04-10 14:24:31 -0700104
105 /*
Mathias Agopian988b8bd2009-05-04 14:26:56 -0700106 * (*unregisterBuffer)() is called once this handle is no longer needed in
107 * this process. After this call, it is an error to call (*lock)(),
108 * (*unlock)(), or (*registerBuffer)().
Mathias Agopiana8a75162009-04-10 14:24:31 -0700109 *
Mathias Agopian988b8bd2009-05-04 14:26:56 -0700110 * This function doesn't close or free the handle itself; this is done
111 * by other means, usually through libcutils's native_handle_close() and
112 * native_handle_free().
113 *
114 * It is an error to call (*unregisterBuffer)() on a buffer that wasn't
115 * explicitly registered first.
Mathias Agopiana8a75162009-04-10 14:24:31 -0700116 */
Mathias Agopian988b8bd2009-05-04 14:26:56 -0700117 int (*unregisterBuffer)(struct gralloc_module_t const* module,
118 buffer_handle_t handle);
Mathias Agopiana8a75162009-04-10 14:24:31 -0700119
120 /*
121 * The (*lock)() method is called before a buffer is accessed for the
122 * specified usage. This call may block, for instance if the h/w needs
123 * to finish rendering or if CPU caches need to be synchronized.
124 *
Mathias Agopian988b8bd2009-05-04 14:26:56 -0700125 * The caller promises to modify only pixels in the area specified
126 * by (l,t,w,h).
Mathias Agopiana8a75162009-04-10 14:24:31 -0700127 *
128 * The content of the buffer outside of the specified area is NOT modified
129 * by this call.
Mathias Agopian988b8bd2009-05-04 14:26:56 -0700130 *
131 * If usage specifies GRALLOC_USAGE_SW_*, vaddr is filled with the address
132 * of the buffer in virtual memory.
133 *
134 * If the buffer was created with a usage mask incompatible with the
135 * requested usage flags here, -EINVAL is returned.
Mathias Agopiana8a75162009-04-10 14:24:31 -0700136 *
137 */
138
139 int (*lock)(struct gralloc_module_t const* module,
140 buffer_handle_t handle, int usage,
Mathias Agopian988b8bd2009-05-04 14:26:56 -0700141 int l, int t, int w, int h,
142 void** vaddr);
Mathias Agopiana8a75162009-04-10 14:24:31 -0700143
144
145 /*
146 * The (*unlock)() method must be called after all changes to the buffer
147 * are completed.
148 */
149
150 int (*unlock)(struct gralloc_module_t const* module,
151 buffer_handle_t handle);
152
153};
154
155/*****************************************************************************/
156
157/**
158 * Every device data structure must begin with hw_device_t
159 * followed by module specific public methods and attributes.
160 */
161
162struct alloc_device_t {
163 struct hw_device_t common;
164
165 /*
166 * (*alloc)() Allocates a buffer in graphic memory with the requested
167 * parameters and returns a buffer_handle_t and the stride in pixels to
168 * allow the implementation to satisfy hardware constraints on the width
169 * of a pixmap (eg: it may have to be multiple of 8 pixels).
170 * The CALLER TAKES OWNERSHIP of the buffer_handle_t.
171 *
172 * Returns 0 on success or -errno on error.
173 */
174
175 int (*alloc)(struct alloc_device_t* dev,
176 int w, int h, int format, int usage,
177 buffer_handle_t* handle, int* stride);
178
179 /*
180 * (*free)() Frees a previously allocated buffer.
181 * Behavior is undefined if the buffer is still mapped in any process,
182 * but shall not result in termination of the program or security breaches
183 * (allowing a process to get access to another process' buffers).
184 * THIS FUNCTION TAKES OWNERSHIP of the buffer_handle_t which becomes
185 * invalid after the call.
186 *
187 * Returns 0 on success or -errno on error.
188 */
189 int (*free)(struct alloc_device_t* dev,
190 buffer_handle_t handle);
191
192};
193
194
195struct framebuffer_device_t {
196 struct hw_device_t common;
197
198 /* flags describing some attributes of the framebuffer */
199 const uint32_t flags;
200
201 /* dimensions of the framebuffer in pixels */
202 const uint32_t width;
203 const uint32_t height;
204
205 /* frambuffer stride in pixels */
206 const int stride;
207
208 /* framebuffer pixel format */
209 const int format;
210
211 /* resolution of the framebuffer's display panel in pixel per inch*/
212 const float xdpi;
213 const float ydpi;
214
215 /* framebuffer's display panel refresh rate in frames per second */
216 const float fps;
217
218 /* min swap interval supported by this framebuffer */
219 const int minSwapInterval;
220
221 /* max swap interval supported by this framebuffer */
222 const int maxSwapInterval;
223
224 int reserved[8];
225
226 /*
227 * requests a specific swap-interval (same definition than EGL)
228 *
229 * Returns 0 on success or -errno on error.
230 */
231 int (*setSwapInterval)(struct framebuffer_device_t* window,
232 int interval);
233
234 /*
235 * sets a rectangle evaluated during (*post)() specifying which area
236 * of the buffer passed in (*post)() needs to be posted.
237 *
238 * return -EINVAL if width or height <=0, or if left or top < 0
239 */
240 int (*setUpdateRect)(struct framebuffer_device_t* window,
241 int left, int top, int width, int height);
242
243 /*
244 * Post <buffer> to the display (display it on the screen)
245 * The buffer must have been allocated with the
246 * GRALLOC_USAGE_HW_FB usage flag.
247 * buffer must be the same width and height as the display and must NOT
248 * be locked.
249 *
250 * The buffer is shown during the next VSYNC.
251 *
252 * If the same buffer is posted again (possibly after some other buffer),
253 * post() will block until the the first post is completed.
254 *
255 * Internally, post() is expected to lock the buffer so that a
256 * subsequent call to gralloc_module_t::(*lock)() with USAGE_RENDER or
257 * USAGE_*_WRITE will block until it is safe; that is typically once this
258 * buffer is shown and another buffer has been posted.
259 *
260 * Returns 0 on success or -errno on error.
261 */
262 int (*post)(struct framebuffer_device_t* dev, buffer_handle_t buffer);
263
264 void* reserved_proc[8];
265};
266
267
268/** convenience API for opening and closing a supported device */
269
270static inline int gralloc_open(const struct hw_module_t* module,
271 struct alloc_device_t** device) {
272 return module->methods->open(module,
273 GRALLOC_HARDWARE_GPU0, (struct hw_device_t**)device);
274}
275
276static inline int gralloc_close(struct alloc_device_t* device) {
277 return device->common.close(&device->common);
278}
279
280
281static inline int framebuffer_open(const struct hw_module_t* module,
282 struct framebuffer_device_t** device) {
283 return module->methods->open(module,
284 GRALLOC_HARDWARE_FB0, (struct hw_device_t**)device);
285}
286
287static inline int framebuffer_close(struct framebuffer_device_t* device) {
288 return device->common.close(&device->common);
289}
290
291
292__END_DECLS
293
294#endif // ANDROID_ALLOC_INTERFACE_H