Merge branch '7.8'
[mesa.git] / src / gallium / include / pipe / p_state.h
1 /**************************************************************************
2 *
3 * Copyright 2007 Tungsten Graphics, Inc., Cedar Park, Texas.
4 * All Rights Reserved.
5 *
6 * Permission is hereby granted, free of charge, to any person obtaining a
7 * copy of this software and associated documentation files (the
8 * "Software"), to deal in the Software without restriction, including
9 * without limitation the rights to use, copy, modify, merge, publish,
10 * distribute, sub license, and/or sell copies of the Software, and to
11 * permit persons to whom the Software is furnished to do so, subject to
12 * the following conditions:
13 *
14 * The above copyright notice and this permission notice (including the
15 * next paragraph) shall be included in all copies or substantial portions
16 * of the Software.
17 *
18 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
19 * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
20 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT.
21 * IN NO EVENT SHALL TUNGSTEN GRAPHICS AND/OR ITS SUPPLIERS BE LIABLE FOR
22 * ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT,
23 * TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE
24 * SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
25 *
26 **************************************************************************/
27
28
29 /**
30 * @file
31 *
32 * Abstract graphics pipe state objects.
33 *
34 * Basic notes:
35 * 1. Want compact representations, so we use bitfields.
36 * 2. Put bitfields before other (GLfloat) fields.
37 */
38
39
40 #ifndef PIPE_STATE_H
41 #define PIPE_STATE_H
42
43 #include "p_compiler.h"
44 #include "p_defines.h"
45 #include "p_format.h"
46 #include "p_screen.h"
47
48
49 #ifdef __cplusplus
50 extern "C" {
51 #endif
52
53
54 /**
55 * Implementation limits
56 */
57 #define PIPE_MAX_ATTRIBS 32
58 #define PIPE_MAX_CLIP_PLANES 6
59 #define PIPE_MAX_COLOR_BUFS 8
60 #define PIPE_MAX_CONSTANT_BUFFERS 32
61 #define PIPE_MAX_SAMPLERS 16
62 #define PIPE_MAX_VERTEX_SAMPLERS 16
63 #define PIPE_MAX_SHADER_INPUTS 16
64 #define PIPE_MAX_SHADER_OUTPUTS 16
65 #define PIPE_MAX_TEXTURE_LEVELS 16
66
67
68 struct pipe_reference
69 {
70 int32_t count; /* atomic */
71 };
72
73
74
75 /**
76 * Primitive (point/line/tri) rasterization info
77 */
78 struct pipe_rasterizer_state
79 {
80 unsigned flatshade:1;
81 unsigned light_twoside:1;
82 unsigned front_winding:2; /**< PIPE_WINDING_x */
83 unsigned cull_mode:2; /**< PIPE_WINDING_x */
84 unsigned fill_cw:2; /**< PIPE_POLYGON_MODE_x */
85 unsigned fill_ccw:2; /**< PIPE_POLYGON_MODE_x */
86 unsigned offset_cw:1;
87 unsigned offset_ccw:1;
88 unsigned scissor:1;
89 unsigned poly_smooth:1;
90 unsigned poly_stipple_enable:1;
91 unsigned point_smooth:1;
92 unsigned sprite_coord_enable:PIPE_MAX_SHADER_OUTPUTS;
93 unsigned sprite_coord_mode:1; /**< PIPE_SPRITE_COORD_ */
94 unsigned point_quad_rasterization:1; /** points rasterized as quads or points */
95 unsigned point_size_per_vertex:1; /**< size computed in vertex shader */
96 unsigned multisample:1; /* XXX maybe more ms state in future */
97 unsigned line_smooth:1;
98 unsigned line_stipple_enable:1;
99 unsigned line_stipple_factor:8; /**< [1..256] actually */
100 unsigned line_stipple_pattern:16;
101 unsigned line_last_pixel:1;
102
103 /**
104 * Use the first vertex of a primitive as the provoking vertex for
105 * flat shading.
106 */
107 unsigned flatshade_first:1;
108
109 /**
110 * When true, triangle rasterization uses (0.5, 0.5) pixel centers
111 * for determining pixel ownership.
112 *
113 * When false, triangle rasterization uses (0,0) pixel centers for
114 * determining pixel ownership.
115 *
116 * Triangle rasterization always uses a 'top,left' rule for pixel
117 * ownership, this just alters which point we consider the pixel
118 * center for that test.
119 */
120 unsigned gl_rasterization_rules:1;
121
122 float line_width;
123 float point_size; /**< used when no per-vertex size */
124 float offset_units;
125 float offset_scale;
126 };
127
128
129 struct pipe_poly_stipple
130 {
131 unsigned stipple[32];
132 };
133
134
135 struct pipe_viewport_state
136 {
137 float scale[4];
138 float translate[4];
139 };
140
141
142 struct pipe_scissor_state
143 {
144 unsigned minx:16;
145 unsigned miny:16;
146 unsigned maxx:16;
147 unsigned maxy:16;
148 };
149
150
151 struct pipe_clip_state
152 {
153 float ucp[PIPE_MAX_CLIP_PLANES][4];
154 unsigned nr;
155 };
156
157
158 struct pipe_shader_state
159 {
160 const struct tgsi_token *tokens;
161 };
162
163
164 struct pipe_depth_state
165 {
166 unsigned enabled:1; /**< depth test enabled? */
167 unsigned writemask:1; /**< allow depth buffer writes? */
168 unsigned func:3; /**< depth test func (PIPE_FUNC_x) */
169 };
170
171
172 struct pipe_stencil_state
173 {
174 unsigned enabled:1; /**< stencil[0]: stencil enabled, stencil[1]: two-side enabled */
175 unsigned func:3; /**< PIPE_FUNC_x */
176 unsigned fail_op:3; /**< PIPE_STENCIL_OP_x */
177 unsigned zpass_op:3; /**< PIPE_STENCIL_OP_x */
178 unsigned zfail_op:3; /**< PIPE_STENCIL_OP_x */
179 unsigned valuemask:8;
180 unsigned writemask:8;
181 };
182
183
184 struct pipe_alpha_state
185 {
186 unsigned enabled:1;
187 unsigned func:3; /**< PIPE_FUNC_x */
188 float ref_value; /**< reference value */
189 };
190
191
192 struct pipe_depth_stencil_alpha_state
193 {
194 struct pipe_depth_state depth;
195 struct pipe_stencil_state stencil[2]; /**< [0] = front, [1] = back */
196 struct pipe_alpha_state alpha;
197 };
198
199
200 struct pipe_rt_blend_state
201 {
202 unsigned blend_enable:1;
203
204 unsigned rgb_func:3; /**< PIPE_BLEND_x */
205 unsigned rgb_src_factor:5; /**< PIPE_BLENDFACTOR_x */
206 unsigned rgb_dst_factor:5; /**< PIPE_BLENDFACTOR_x */
207
208 unsigned alpha_func:3; /**< PIPE_BLEND_x */
209 unsigned alpha_src_factor:5; /**< PIPE_BLENDFACTOR_x */
210 unsigned alpha_dst_factor:5; /**< PIPE_BLENDFACTOR_x */
211
212 unsigned colormask:4; /**< bitmask of PIPE_MASK_R/G/B/A */
213 };
214
215 struct pipe_blend_state
216 {
217 unsigned independent_blend_enable:1;
218 unsigned logicop_enable:1;
219 unsigned logicop_func:4; /**< PIPE_LOGICOP_x */
220 unsigned dither:1;
221 struct pipe_rt_blend_state rt[PIPE_MAX_COLOR_BUFS];
222 };
223
224
225 struct pipe_blend_color
226 {
227 float color[4];
228 };
229
230 struct pipe_stencil_ref
231 {
232 ubyte ref_value[2];
233 };
234
235 struct pipe_framebuffer_state
236 {
237 unsigned width, height;
238
239 /** multiple color buffers for multiple render targets */
240 unsigned nr_cbufs;
241 struct pipe_surface *cbufs[PIPE_MAX_COLOR_BUFS];
242
243 struct pipe_surface *zsbuf; /**< Z/stencil buffer */
244 };
245
246
247 /**
248 * Texture sampler state.
249 */
250 struct pipe_sampler_state
251 {
252 unsigned wrap_s:3; /**< PIPE_TEX_WRAP_x */
253 unsigned wrap_t:3; /**< PIPE_TEX_WRAP_x */
254 unsigned wrap_r:3; /**< PIPE_TEX_WRAP_x */
255 unsigned min_img_filter:2; /**< PIPE_TEX_FILTER_x */
256 unsigned min_mip_filter:2; /**< PIPE_TEX_MIPFILTER_x */
257 unsigned mag_img_filter:2; /**< PIPE_TEX_FILTER_x */
258 unsigned compare_mode:1; /**< PIPE_TEX_COMPARE_x */
259 unsigned compare_func:3; /**< PIPE_FUNC_x */
260 unsigned normalized_coords:1; /**< Are coords normalized to [0,1]? */
261 unsigned max_anisotropy:6;
262 float lod_bias; /**< LOD/lambda bias */
263 float min_lod, max_lod; /**< LOD clamp range, after bias */
264 float border_color[4];
265 };
266
267
268 /**
269 * 2D surface. This is basically a view into a memory buffer.
270 * May be a renderbuffer, texture mipmap level, etc.
271 */
272 struct pipe_surface
273 {
274 struct pipe_reference reference;
275 struct pipe_resource *texture; /**< resource into which this is a view */
276 enum pipe_format format;
277
278 unsigned width; /**< logical width in pixels */
279 unsigned height; /**< logical height in pixels */
280
281 unsigned layout; /**< PIPE_SURFACE_LAYOUT_x */
282 unsigned offset; /**< offset from start of buffer, in bytes */
283 unsigned usage; /**< bitmask of PIPE_BIND_x */
284
285 unsigned zslice;
286 unsigned face;
287 unsigned level;
288 };
289
290
291
292
293
294 /**
295 * A view into a texture that can be bound to a shader stage.
296 */
297 struct pipe_sampler_view
298 {
299 struct pipe_reference reference;
300 enum pipe_format format; /**< typed PIPE_FORMAT_x */
301 struct pipe_resource *texture; /**< texture into which this is a view */
302 struct pipe_context *context; /**< context this view belongs to */
303 unsigned first_level:8; /**< first mipmap level */
304 unsigned last_level:8; /**< last mipmap level */
305 unsigned swizzle_r:3; /**< PIPE_SWIZZLE_x for red component */
306 unsigned swizzle_g:3; /**< PIPE_SWIZZLE_x for green component */
307 unsigned swizzle_b:3; /**< PIPE_SWIZZLE_x for blue component */
308 unsigned swizzle_a:3; /**< PIPE_SWIZZLE_x for alpha component */
309 };
310
311
312 struct pipe_box
313 {
314 unsigned x;
315 unsigned y;
316 unsigned z;
317 unsigned width;
318 unsigned height;
319 unsigned depth;
320 };
321
322
323
324 struct pipe_resource
325 {
326 struct pipe_reference reference;
327 struct pipe_screen *screen; /**< screen that this texture belongs to */
328 enum pipe_texture_target target; /**< PIPE_TEXTURE_x */
329 enum pipe_format format; /**< PIPE_FORMAT_x */
330
331 unsigned width0;
332 unsigned height0;
333 unsigned depth0;
334
335 unsigned last_level:8; /**< Index of last mipmap level present/defined */
336 unsigned nr_samples:8; /**< for multisampled surfaces, nr of samples */
337 unsigned _usage:8; /* PIPE_USAGE_x (not a bitmask) */
338
339 unsigned bind; /* PIPE_BIND_x */
340 unsigned flags; /* PIPE_RESOURCE_FLAG_x */
341 };
342
343
344 struct pipe_subresource
345 {
346 unsigned face:16;
347 unsigned level:16;
348 };
349
350
351 /**
352 * Transfer object. For data transfer to/from a texture.
353 */
354 struct pipe_transfer
355 {
356 struct pipe_resource *resource; /**< resource to transfer to/from */
357 struct pipe_subresource sr;
358 enum pipe_transfer_usage usage;
359 struct pipe_box box;
360 unsigned stride;
361 unsigned slice_stride;
362 void *data;
363 };
364
365
366
367 /**
368 * A vertex buffer. Typically, all the vertex data/attributes for
369 * drawing something will be in one buffer. But it's also possible, for
370 * example, to put colors in one buffer and texcoords in another.
371 */
372 struct pipe_vertex_buffer
373 {
374 unsigned stride; /**< stride to same attrib in next vertex, in bytes */
375 unsigned max_index; /**< number of vertices in this buffer */
376 unsigned buffer_offset; /**< offset to start of data in buffer, in bytes */
377 struct pipe_resource *buffer; /**< the actual buffer */
378 };
379
380
381 /**
382 * Information to describe a vertex attribute (position, color, etc)
383 */
384 struct pipe_vertex_element
385 {
386 /** Offset of this attribute, in bytes, from the start of the vertex */
387 unsigned src_offset;
388
389 /** Instance data rate divisor. 0 means this is per-vertex data,
390 * n means per-instance data used for n consecutive instances (n > 0).
391 */
392 unsigned instance_divisor;
393
394 /** Which vertex_buffer (as given to pipe->set_vertex_buffer()) does
395 * this attribute live in?
396 */
397 unsigned vertex_buffer_index:8;
398
399 enum pipe_format src_format;
400 };
401
402
403 #ifdef __cplusplus
404 }
405 #endif
406
407 #endif