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Stéphane Marchesin25a26062014-09-12 16:18:59 -07001/*
2 * Copyright © 2011 Intel Corporation
3 *
4 * Permission is hereby granted, free of charge, to any person obtaining a
5 * copy of this software and associated documentation files (the "Software"),
6 * to deal in the Software without restriction, including without limitation
7 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
8 * and/or sell copies of the Software, and to permit persons to whom the
9 * Software is furnished to do so, subject to the following conditions:
10 *
11 * The above copyright notice and this permission notice (including the next
12 * paragraph) shall be included in all copies or substantial portions of the
13 * Software.
14 *
15 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
16 * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
17 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
18 * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT
19 * HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY,
20 * WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
21 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
22 * DEALINGS IN THE SOFTWARE.
23 *
24 * Authors:
25 * Benjamin Franzke <benjaminfranzke@googlemail.com>
26 */
27
28#ifndef _GBM_H_
29#define _GBM_H_
30
31#ifdef __cplusplus
32extern "C" {
33#endif
34
35
36#define __GBM__ 1
37
38#include <stdint.h>
39
40/**
41 * \file gbm.h
42 * \brief Generic Buffer Manager
43 */
44
45struct gbm_device;
46struct gbm_bo;
47struct gbm_surface;
48
49/**
50 * \mainpage The Generic Buffer Manager
51 *
52 * This module provides an abstraction that the caller can use to request a
53 * buffer from the underlying memory management system for the platform.
54 *
55 * This allows the creation of portable code whilst still allowing access to
56 * the underlying memory manager.
57 */
58
59/**
60 * Abstraction representing the handle to a buffer allocated by the
61 * manager
62 */
63union gbm_bo_handle {
64 void *ptr;
65 int32_t s32;
66 uint32_t u32;
67 int64_t s64;
68 uint64_t u64;
69};
70
Stéphane Marchesin25a26062014-09-12 16:18:59 -070071#define __gbm_fourcc_code(a,b,c,d) ((uint32_t)(a) | ((uint32_t)(b) << 8) | \
72 ((uint32_t)(c) << 16) | ((uint32_t)(d) << 24))
73
74#define GBM_FORMAT_BIG_ENDIAN (1<<31) /* format is big endian instead of little endian */
75
76/* color index */
77#define GBM_FORMAT_C8 __gbm_fourcc_code('C', '8', ' ', ' ') /* [7:0] C */
78
Dongseong Hwangb26f26d2016-04-07 14:51:29 +030079/* 8 bpp Red */
80#define GBM_FORMAT_R8 __gbm_fourcc_code('R', '8', ' ', ' ') /* [7:0] R */
81
82/* 16 bpp RG */
83#define GBM_FORMAT_RG88 __gbm_fourcc_code('R', 'G', '8', '8') /* [15:0] R:G 8:8 little endian */
84#define GBM_FORMAT_GR88 __gbm_fourcc_code('G', 'R', '8', '8') /* [15:0] G:R 8:8 little endian */
85
Stéphane Marchesin25a26062014-09-12 16:18:59 -070086/* 8 bpp RGB */
87#define GBM_FORMAT_RGB332 __gbm_fourcc_code('R', 'G', 'B', '8') /* [7:0] R:G:B 3:3:2 */
88#define GBM_FORMAT_BGR233 __gbm_fourcc_code('B', 'G', 'R', '8') /* [7:0] B:G:R 2:3:3 */
89
90/* 16 bpp RGB */
91#define GBM_FORMAT_XRGB4444 __gbm_fourcc_code('X', 'R', '1', '2') /* [15:0] x:R:G:B 4:4:4:4 little endian */
92#define GBM_FORMAT_XBGR4444 __gbm_fourcc_code('X', 'B', '1', '2') /* [15:0] x:B:G:R 4:4:4:4 little endian */
93#define GBM_FORMAT_RGBX4444 __gbm_fourcc_code('R', 'X', '1', '2') /* [15:0] R:G:B:x 4:4:4:4 little endian */
94#define GBM_FORMAT_BGRX4444 __gbm_fourcc_code('B', 'X', '1', '2') /* [15:0] B:G:R:x 4:4:4:4 little endian */
95
96#define GBM_FORMAT_ARGB4444 __gbm_fourcc_code('A', 'R', '1', '2') /* [15:0] A:R:G:B 4:4:4:4 little endian */
97#define GBM_FORMAT_ABGR4444 __gbm_fourcc_code('A', 'B', '1', '2') /* [15:0] A:B:G:R 4:4:4:4 little endian */
98#define GBM_FORMAT_RGBA4444 __gbm_fourcc_code('R', 'A', '1', '2') /* [15:0] R:G:B:A 4:4:4:4 little endian */
99#define GBM_FORMAT_BGRA4444 __gbm_fourcc_code('B', 'A', '1', '2') /* [15:0] B:G:R:A 4:4:4:4 little endian */
100
101#define GBM_FORMAT_XRGB1555 __gbm_fourcc_code('X', 'R', '1', '5') /* [15:0] x:R:G:B 1:5:5:5 little endian */
102#define GBM_FORMAT_XBGR1555 __gbm_fourcc_code('X', 'B', '1', '5') /* [15:0] x:B:G:R 1:5:5:5 little endian */
103#define GBM_FORMAT_RGBX5551 __gbm_fourcc_code('R', 'X', '1', '5') /* [15:0] R:G:B:x 5:5:5:1 little endian */
104#define GBM_FORMAT_BGRX5551 __gbm_fourcc_code('B', 'X', '1', '5') /* [15:0] B:G:R:x 5:5:5:1 little endian */
105
106#define GBM_FORMAT_ARGB1555 __gbm_fourcc_code('A', 'R', '1', '5') /* [15:0] A:R:G:B 1:5:5:5 little endian */
107#define GBM_FORMAT_ABGR1555 __gbm_fourcc_code('A', 'B', '1', '5') /* [15:0] A:B:G:R 1:5:5:5 little endian */
108#define GBM_FORMAT_RGBA5551 __gbm_fourcc_code('R', 'A', '1', '5') /* [15:0] R:G:B:A 5:5:5:1 little endian */
109#define GBM_FORMAT_BGRA5551 __gbm_fourcc_code('B', 'A', '1', '5') /* [15:0] B:G:R:A 5:5:5:1 little endian */
110
111#define GBM_FORMAT_RGB565 __gbm_fourcc_code('R', 'G', '1', '6') /* [15:0] R:G:B 5:6:5 little endian */
112#define GBM_FORMAT_BGR565 __gbm_fourcc_code('B', 'G', '1', '6') /* [15:0] B:G:R 5:6:5 little endian */
113
114/* 24 bpp RGB */
115#define GBM_FORMAT_RGB888 __gbm_fourcc_code('R', 'G', '2', '4') /* [23:0] R:G:B little endian */
116#define GBM_FORMAT_BGR888 __gbm_fourcc_code('B', 'G', '2', '4') /* [23:0] B:G:R little endian */
117
118/* 32 bpp RGB */
119#define GBM_FORMAT_XRGB8888 __gbm_fourcc_code('X', 'R', '2', '4') /* [31:0] x:R:G:B 8:8:8:8 little endian */
120#define GBM_FORMAT_XBGR8888 __gbm_fourcc_code('X', 'B', '2', '4') /* [31:0] x:B:G:R 8:8:8:8 little endian */
121#define GBM_FORMAT_RGBX8888 __gbm_fourcc_code('R', 'X', '2', '4') /* [31:0] R:G:B:x 8:8:8:8 little endian */
122#define GBM_FORMAT_BGRX8888 __gbm_fourcc_code('B', 'X', '2', '4') /* [31:0] B:G:R:x 8:8:8:8 little endian */
123
124#define GBM_FORMAT_ARGB8888 __gbm_fourcc_code('A', 'R', '2', '4') /* [31:0] A:R:G:B 8:8:8:8 little endian */
125#define GBM_FORMAT_ABGR8888 __gbm_fourcc_code('A', 'B', '2', '4') /* [31:0] A:B:G:R 8:8:8:8 little endian */
126#define GBM_FORMAT_RGBA8888 __gbm_fourcc_code('R', 'A', '2', '4') /* [31:0] R:G:B:A 8:8:8:8 little endian */
127#define GBM_FORMAT_BGRA8888 __gbm_fourcc_code('B', 'A', '2', '4') /* [31:0] B:G:R:A 8:8:8:8 little endian */
128
129#define GBM_FORMAT_XRGB2101010 __gbm_fourcc_code('X', 'R', '3', '0') /* [31:0] x:R:G:B 2:10:10:10 little endian */
130#define GBM_FORMAT_XBGR2101010 __gbm_fourcc_code('X', 'B', '3', '0') /* [31:0] x:B:G:R 2:10:10:10 little endian */
131#define GBM_FORMAT_RGBX1010102 __gbm_fourcc_code('R', 'X', '3', '0') /* [31:0] R:G:B:x 10:10:10:2 little endian */
132#define GBM_FORMAT_BGRX1010102 __gbm_fourcc_code('B', 'X', '3', '0') /* [31:0] B:G:R:x 10:10:10:2 little endian */
133
134#define GBM_FORMAT_ARGB2101010 __gbm_fourcc_code('A', 'R', '3', '0') /* [31:0] A:R:G:B 2:10:10:10 little endian */
135#define GBM_FORMAT_ABGR2101010 __gbm_fourcc_code('A', 'B', '3', '0') /* [31:0] A:B:G:R 2:10:10:10 little endian */
136#define GBM_FORMAT_RGBA1010102 __gbm_fourcc_code('R', 'A', '3', '0') /* [31:0] R:G:B:A 10:10:10:2 little endian */
137#define GBM_FORMAT_BGRA1010102 __gbm_fourcc_code('B', 'A', '3', '0') /* [31:0] B:G:R:A 10:10:10:2 little endian */
138
139/* packed YCbCr */
140#define GBM_FORMAT_YUYV __gbm_fourcc_code('Y', 'U', 'Y', 'V') /* [31:0] Cr0:Y1:Cb0:Y0 8:8:8:8 little endian */
141#define GBM_FORMAT_YVYU __gbm_fourcc_code('Y', 'V', 'Y', 'U') /* [31:0] Cb0:Y1:Cr0:Y0 8:8:8:8 little endian */
142#define GBM_FORMAT_UYVY __gbm_fourcc_code('U', 'Y', 'V', 'Y') /* [31:0] Y1:Cr0:Y0:Cb0 8:8:8:8 little endian */
143#define GBM_FORMAT_VYUY __gbm_fourcc_code('V', 'Y', 'U', 'Y') /* [31:0] Y1:Cb0:Y0:Cr0 8:8:8:8 little endian */
144
145#define GBM_FORMAT_AYUV __gbm_fourcc_code('A', 'Y', 'U', 'V') /* [31:0] A:Y:Cb:Cr 8:8:8:8 little endian */
146
147/*
148 * 2 plane YCbCr
149 * index 0 = Y plane, [7:0] Y
150 * index 1 = Cr:Cb plane, [15:0] Cr:Cb little endian
151 * or
152 * index 1 = Cb:Cr plane, [15:0] Cb:Cr little endian
153 */
154#define GBM_FORMAT_NV12 __gbm_fourcc_code('N', 'V', '1', '2') /* 2x2 subsampled Cr:Cb plane */
155#define GBM_FORMAT_NV21 __gbm_fourcc_code('N', 'V', '2', '1') /* 2x2 subsampled Cb:Cr plane */
156#define GBM_FORMAT_NV16 __gbm_fourcc_code('N', 'V', '1', '6') /* 2x1 subsampled Cr:Cb plane */
157#define GBM_FORMAT_NV61 __gbm_fourcc_code('N', 'V', '6', '1') /* 2x1 subsampled Cb:Cr plane */
158
159/*
160 * 3 plane YCbCr
161 * index 0: Y plane, [7:0] Y
162 * index 1: Cb plane, [7:0] Cb
163 * index 2: Cr plane, [7:0] Cr
164 * or
165 * index 1: Cr plane, [7:0] Cr
166 * index 2: Cb plane, [7:0] Cb
167 */
168#define GBM_FORMAT_YUV410 __gbm_fourcc_code('Y', 'U', 'V', '9') /* 4x4 subsampled Cb (1) and Cr (2) planes */
169#define GBM_FORMAT_YVU410 __gbm_fourcc_code('Y', 'V', 'U', '9') /* 4x4 subsampled Cr (1) and Cb (2) planes */
170#define GBM_FORMAT_YUV411 __gbm_fourcc_code('Y', 'U', '1', '1') /* 4x1 subsampled Cb (1) and Cr (2) planes */
171#define GBM_FORMAT_YVU411 __gbm_fourcc_code('Y', 'V', '1', '1') /* 4x1 subsampled Cr (1) and Cb (2) planes */
172#define GBM_FORMAT_YUV420 __gbm_fourcc_code('Y', 'U', '1', '2') /* 2x2 subsampled Cb (1) and Cr (2) planes */
173#define GBM_FORMAT_YVU420 __gbm_fourcc_code('Y', 'V', '1', '2') /* 2x2 subsampled Cr (1) and Cb (2) planes */
174#define GBM_FORMAT_YUV422 __gbm_fourcc_code('Y', 'U', '1', '6') /* 2x1 subsampled Cb (1) and Cr (2) planes */
175#define GBM_FORMAT_YVU422 __gbm_fourcc_code('Y', 'V', '1', '6') /* 2x1 subsampled Cr (1) and Cb (2) planes */
176#define GBM_FORMAT_YUV444 __gbm_fourcc_code('Y', 'U', '2', '4') /* non-subsampled Cb (1) and Cr (2) planes */
177#define GBM_FORMAT_YVU444 __gbm_fourcc_code('Y', 'V', '2', '4') /* non-subsampled Cr (1) and Cb (2) planes */
178
Vince Hsua6878fe2016-05-23 10:32:25 +0800179/*
180 * Format Modifiers:
181 *
182 * Format modifiers describe, typically, a re-ordering or modification
183 * of the data in a plane of an FB. This can be used to express tiled/
184 * swizzled formats, or compression, or a combination of the two.
185 *
186 * The upper 8 bits of the format modifier are a vendor-id as assigned
187 * below. The lower 56 bits are assigned as vendor sees fit.
188 */
189
190/* Vendor Ids: */
191#define GBM_FORMAT_MOD_NONE 0
192#define GBM_FORMAT_MOD_VENDOR_INTEL 0x01
193#define GBM_FORMAT_MOD_VENDOR_AMD 0x02
194#define GBM_FORMAT_MOD_VENDOR_NV 0x03
195#define GBM_FORMAT_MOD_VENDOR_SAMSUNG 0x04
196#define GBM_FORMAT_MOD_VENDOR_QCOM 0x05
197/* add more to the end as needed */
198
199#define gbm_fourcc_mod_code(vendor, val) \
200 ((((__u64)GBM_FORMAT_MOD_VENDOR_## vendor) << 56) | (val & 0x00ffffffffffffffULL))
Stéphane Marchesin25a26062014-09-12 16:18:59 -0700201
202/**
203 * Flags to indicate the intended use for the buffer - these are passed into
204 * gbm_bo_create(). The caller must set the union of all the flags that are
205 * appropriate
206 *
207 * \sa Use gbm_device_is_format_supported() to check if the combination of format
208 * and use flags are supported
209 */
210enum gbm_bo_flags {
211 /**
212 * Buffer is going to be presented to the screen using an API such as KMS
213 */
214 GBM_BO_USE_SCANOUT = (1 << 0),
215 /**
216 * Buffer is going to be used as cursor
217 */
218 GBM_BO_USE_CURSOR = (1 << 1),
219 /**
220 * Deprecated
221 */
222 GBM_BO_USE_CURSOR_64X64 = GBM_BO_USE_CURSOR,
223 /**
224 * Buffer is to be used for rendering - for example it is going to be used
225 * as the storage for a color buffer
226 */
227 GBM_BO_USE_RENDERING = (1 << 2),
228 /**
Zach Reizner5c227772016-03-08 10:22:40 -0800229 * Deprecated
Stéphane Marchesin25a26062014-09-12 16:18:59 -0700230 */
231 GBM_BO_USE_WRITE = (1 << 3),
Zach Reizner1e229392016-02-25 10:45:44 -0800232 /**
233 * Buffer is guaranteed to be laid out linearly in memory. That is, the
234 * buffer is laid out as an array with 'height' blocks, each block with
235 * length 'stride'. Each stride is in the same order as the rows of the
236 * buffer.
237 */
238 GBM_BO_USE_LINEAR = (1 << 4),
Stéphane Marchesin25a26062014-09-12 16:18:59 -0700239};
240
241int
242gbm_device_get_fd(struct gbm_device *gbm);
243
244const char *
245gbm_device_get_backend_name(struct gbm_device *gbm);
246
247int
248gbm_device_is_format_supported(struct gbm_device *gbm,
249 uint32_t format, uint32_t usage);
250
251void
252gbm_device_destroy(struct gbm_device *gbm);
253
254struct gbm_device *
255gbm_create_device(int fd);
256
257struct gbm_bo *
258gbm_bo_create(struct gbm_device *gbm,
259 uint32_t width, uint32_t height,
260 uint32_t format, uint32_t flags);
261
262#define GBM_BO_IMPORT_WL_BUFFER 0x5501
263#define GBM_BO_IMPORT_EGL_IMAGE 0x5502
264#define GBM_BO_IMPORT_FD 0x5503
265
266struct gbm_import_fd_data {
267 int fd;
268 uint32_t width;
269 uint32_t height;
270 uint32_t stride;
271 uint32_t format;
272};
273
274struct gbm_bo *
275gbm_bo_import(struct gbm_device *gbm, uint32_t type,
276 void *buffer, uint32_t usage);
277
Gurchetan Singh5753c312016-10-05 15:16:22 -0700278/**
279 * Flags to indicate the type of mapping for the buffer - these are
280 * passed into gbm_bo_map(). The caller must set the union of all the
281 * flags that are appropriate.
282 *
283 * These flags are independent of the GBM_BO_USE_* creation flags. However,
284 * mapping the buffer may require copying to/from a staging buffer.
285 *
286 * See also: pipe_transfer_usage
287 */
288enum gbm_bo_transfer_flags {
289 /**
290 * Buffer contents read back (or accessed directly) at transfer
291 * create time.
292 */
293 GBM_BO_TRANSFER_READ = (1 << 0),
294 /**
295 * Buffer contents will be written back at unmap time
296 * (or modified as a result of being accessed directly).
297 */
298 GBM_BO_TRANSFER_WRITE = (1 << 1),
299 /**
300 * Read/modify/write
301 */
302 GBM_BO_TRANSFER_READ_WRITE = (GBM_BO_TRANSFER_READ | GBM_BO_TRANSFER_WRITE),
303};
304
305void *
306gbm_bo_map(struct gbm_bo *bo,
307 uint32_t x, uint32_t y, uint32_t width, uint32_t height,
308 uint32_t flags, uint32_t *stride, void **map_data, size_t plane);
309
310void
311gbm_bo_unmap(struct gbm_bo *bo, void *map_data);
312
Stéphane Marchesin25a26062014-09-12 16:18:59 -0700313uint32_t
314gbm_bo_get_width(struct gbm_bo *bo);
315
316uint32_t
317gbm_bo_get_height(struct gbm_bo *bo);
318
319uint32_t
320gbm_bo_get_stride(struct gbm_bo *bo);
321
Lauri Peltonen7842d8f2014-12-17 23:01:37 -0800322/* Tegra bringup hack to pass tiling parameters at EGLImage creation. */
323uint32_t
324gbm_bo_get_stride_or_tiling(struct gbm_bo *bo);
325
Stéphane Marchesin25a26062014-09-12 16:18:59 -0700326uint32_t
327gbm_bo_get_format(struct gbm_bo *bo);
328
Vince Hsua6878fe2016-05-23 10:32:25 +0800329uint64_t
330gbm_bo_get_format_modifier(struct gbm_bo *bo);
331
Stéphane Marchesin25a26062014-09-12 16:18:59 -0700332struct gbm_device *
333gbm_bo_get_device(struct gbm_bo *bo);
334
335union gbm_bo_handle
336gbm_bo_get_handle(struct gbm_bo *bo);
337
338int
339gbm_bo_get_fd(struct gbm_bo *bo);
340
Yuly Novikov96c7a3b2015-12-08 22:48:29 -0500341size_t
342gbm_bo_get_num_planes(struct gbm_bo *bo);
343
344union gbm_bo_handle
345gbm_bo_get_plane_handle(struct gbm_bo *bo, size_t plane);
346
347int
348gbm_bo_get_plane_fd(struct gbm_bo *bo, size_t plane);
349
350uint32_t
351gbm_bo_get_plane_offset(struct gbm_bo *bo, size_t plane);
352
353uint32_t
354gbm_bo_get_plane_size(struct gbm_bo *bo, size_t plane);
355
356uint32_t
357gbm_bo_get_plane_stride(struct gbm_bo *bo, size_t plane);
358
Vince Hsua6878fe2016-05-23 10:32:25 +0800359uint64_t
360gbm_bo_get_plane_format_modifier(struct gbm_bo *bo, size_t plane);
361
Stéphane Marchesin25a26062014-09-12 16:18:59 -0700362void
363gbm_bo_set_user_data(struct gbm_bo *bo, void *data,
364 void (*destroy_user_data)(struct gbm_bo *, void *));
365
366void *
367gbm_bo_get_user_data(struct gbm_bo *bo);
368
369void
370gbm_bo_destroy(struct gbm_bo *bo);
371
372struct gbm_surface *
373gbm_surface_create(struct gbm_device *gbm,
374 uint32_t width, uint32_t height,
375 uint32_t format, uint32_t flags);
376
377struct gbm_bo *
378gbm_surface_lock_front_buffer(struct gbm_surface *surface);
379
380void
381gbm_surface_release_buffer(struct gbm_surface *surface, struct gbm_bo *bo);
382
383int
384gbm_surface_has_free_buffers(struct gbm_surface *surface);
385
386void
387gbm_surface_destroy(struct gbm_surface *surface);
388
389#ifdef __cplusplus
390}
391#endif
392
393#endif