nv50: add signed RGTC1 to format table, allow 2_10_10_10 for vbufs
[mesa.git] / src / gallium / drivers / nv50 / nv50_formats.c
1 /*
2 * Copyright 2010 Christoph Bumiller
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 shall be included in
12 * all copies or substantial portions of the Software.
13 *
14 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
15 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
16 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
17 * THE AUTHORS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY,
18 * WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF
19 * OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
20 * SOFTWARE.
21 */
22
23 #include "nv50_screen.h"
24 #include "nv50_texture.h"
25 #include "nouveau/nouveau_class.h"
26 #include "pipe/p_defines.h"
27
28 #define A_(cr, cg, cb, ca, t0, t1, t2, t3, sz, r) \
29 NV50TIC_0_0_MAPR_##cr | NV50TIC_0_0_TYPER_##t0 | \
30 NV50TIC_0_0_MAPG_##cg | NV50TIC_0_0_TYPEG_##t1 | \
31 NV50TIC_0_0_MAPB_##cb | NV50TIC_0_0_TYPEB_##t2 | \
32 NV50TIC_0_0_MAPA_##ca | NV50TIC_0_0_TYPEA_##t3 | \
33 NV50TIC_0_0_FMT_##sz, \
34 NV50TCL_VERTEX_ARRAY_ATTRIB_FORMAT_##sz | \
35 NV50TCL_VERTEX_ARRAY_ATTRIB_TYPE_##t0 | \
36 (NV50TCL_VERTEX_ARRAY_ATTRIB_TYPE_##t0 << 3) | (r << 31)
37
38 #define B_(cr, cg, cb, ca, t0, t1, t2, t3, sz, r) \
39 NV50TIC_0_0_MAPR_##cr | NV50TIC_0_0_TYPER_##t0 | \
40 NV50TIC_0_0_MAPG_##cg | NV50TIC_0_0_TYPEG_##t1 | \
41 NV50TIC_0_0_MAPB_##cb | NV50TIC_0_0_TYPEB_##t2 | \
42 NV50TIC_0_0_MAPA_##ca | NV50TIC_0_0_TYPEA_##t3 | \
43 NV50TIC_0_0_FMT_##sz, 0
44
45 #define VERTEX_BUFFER PIPE_BIND_VERTEX_BUFFER
46 #define SAMPLER_VIEW PIPE_BIND_SAMPLER_VIEW
47 #define RENDER_TARGET PIPE_BIND_RENDER_TARGET
48 #define DEPTH_STENCIL PIPE_BIND_DEPTH_STENCIL
49 #define SCANOUT PIPE_BIND_SCANOUT
50
51 /* for vertex buffers: */
52 #define NV50TIC_0_0_FMT_8_8_8 NV50TIC_0_0_FMT_8_8_8_8
53 #define NV50TIC_0_0_FMT_16_16_16 NV50TIC_0_0_FMT_16_16_16_16
54 #define NV50TIC_0_0_FMT_32_32_32 NV50TIC_0_0_FMT_32_32_32_32
55
56 const struct nv50_format nv50_format_table[PIPE_FORMAT_COUNT] =
57 {
58 /* COMMON FORMATS */
59
60 [PIPE_FORMAT_B8G8R8A8_UNORM] = { NV50TCL_RT_FORMAT_A8R8G8B8_UNORM,
61 A_(C2, C1, C0, C3, UNORM, UNORM, UNORM, UNORM, 8_8_8_8, 1),
62 VERTEX_BUFFER | SAMPLER_VIEW | RENDER_TARGET | SCANOUT },
63
64 [PIPE_FORMAT_B8G8R8X8_UNORM] = { NV50TCL_RT_FORMAT_X8R8G8B8_UNORM,
65 A_(C2, C1, C0, ONE, UNORM, UNORM, UNORM, UNORM, 8_8_8_8, 1),
66 VERTEX_BUFFER | SAMPLER_VIEW | RENDER_TARGET | SCANOUT },
67
68 [PIPE_FORMAT_B8G8R8A8_SRGB] = { NV50TCL_RT_FORMAT_A8R8G8B8_SRGB,
69 A_(C2, C1, C0, C3, UNORM, UNORM, UNORM, UNORM, 8_8_8_8, 1),
70 VERTEX_BUFFER | SAMPLER_VIEW | RENDER_TARGET },
71
72 [PIPE_FORMAT_B8G8R8X8_SRGB] = { NV50TCL_RT_FORMAT_X8R8G8B8_SRGB,
73 A_(C2, C1, C0, ONE, UNORM, UNORM, UNORM, UNORM, 8_8_8_8, 1),
74 VERTEX_BUFFER | SAMPLER_VIEW | RENDER_TARGET },
75
76 [PIPE_FORMAT_B5G6R5_UNORM] = { NV50TCL_RT_FORMAT_R5G6B5_UNORM,
77 B_(C2, C1, C0, ONE, UNORM, UNORM, UNORM, UNORM, 5_6_5, 1),
78 SAMPLER_VIEW | RENDER_TARGET | SCANOUT },
79
80 [PIPE_FORMAT_B5G5R5A1_UNORM] = { NV50TCL_RT_FORMAT_A1R5G5B5_UNORM,
81 B_(C2, C1, C0, C3, UNORM, UNORM, UNORM, UNORM, 1_5_5_5, 1),
82 SAMPLER_VIEW | RENDER_TARGET | SCANOUT },
83
84 [PIPE_FORMAT_B4G4R4A4_UNORM] = { 0,
85 B_(C2, C1, C0, C3, UNORM, UNORM, UNORM, UNORM, 4_4_4_4, 1),
86 SAMPLER_VIEW },
87
88 [PIPE_FORMAT_R10G10B10A2_UNORM] = { NV50TCL_RT_FORMAT_A2B10G10R10_UNORM,
89 A_(C0, C1, C2, C3, UNORM, UNORM, UNORM, UNORM, 2_10_10_10, 0),
90 SAMPLER_VIEW | RENDER_TARGET | VERTEX_BUFFER | SCANOUT },
91
92 [PIPE_FORMAT_B10G10R10A2_UNORM] = { NV50TCL_RT_FORMAT_A2R10G10B10_UNORM,
93 A_(C2, C1, C0, C3, UNORM, UNORM, UNORM, UNORM, 2_10_10_10, 1),
94 SAMPLER_VIEW | RENDER_TARGET | VERTEX_BUFFER },
95
96 /* DEPTH/STENCIL FORMATS */
97
98 [PIPE_FORMAT_Z16_UNORM] = { NV50TCL_ZETA_FORMAT_Z16_UNORM,
99 B_(C0, C0, C0, ONE, UNORM, UINT, UINT, UINT, 16_DEPTH, 0),
100 SAMPLER_VIEW | DEPTH_STENCIL },
101
102 [PIPE_FORMAT_Z24_UNORM_S8_USCALED] = { NV50TCL_ZETA_FORMAT_S8Z24_UNORM,
103 B_(C0, C0, C0, ONE, UNORM, UINT, UINT, UINT, 8_24, 0),
104 SAMPLER_VIEW | DEPTH_STENCIL },
105
106 [PIPE_FORMAT_Z24X8_UNORM] = { NV50TCL_ZETA_FORMAT_X8Z24_UNORM,
107 B_(C0, C0, C0, ONE, UNORM, UINT, UINT, UINT, 8_24, 0),
108 SAMPLER_VIEW | DEPTH_STENCIL },
109
110 [PIPE_FORMAT_S8_USCALED_Z24_UNORM] = { NV50TCL_ZETA_FORMAT_S8Z24_UNORM,
111 B_(C1, C1, C1, ONE, UINT, UNORM, UINT, UINT, 24_8, 0),
112 SAMPLER_VIEW | DEPTH_STENCIL },
113
114 [PIPE_FORMAT_Z32_FLOAT] = { NV50TCL_ZETA_FORMAT_Z32_FLOAT,
115 B_(C0, C0, C0, ONE, FLOAT, UINT, UINT, UINT, 32_DEPTH, 0),
116 SAMPLER_VIEW | DEPTH_STENCIL },
117
118 [PIPE_FORMAT_Z32_FLOAT_S8X24_USCALED] = {
119 NV50TCL_ZETA_FORMAT_Z32_FLOAT_X24S8_UNORM,
120 B_(C0, C0, C0, ONE, FLOAT, UINT, UINT, UINT, 32_8, 0),
121 SAMPLER_VIEW | DEPTH_STENCIL },
122
123 /* LUMINANCE, ALPHA, INTENSITY */
124
125 [PIPE_FORMAT_L8_UNORM] = { 0,
126 A_(C0, C0, C0, ONE, UNORM, UNORM, UNORM, UNORM, 8, 0),
127 SAMPLER_VIEW },
128
129 [PIPE_FORMAT_L8_SRGB] = { 0,
130 A_(C0, C0, C0, ONE, UNORM, UNORM, UNORM, UNORM, 8, 0),
131 SAMPLER_VIEW },
132
133 [PIPE_FORMAT_I8_UNORM] = { 0,
134 A_(C0, C0, C0, C0, UNORM, UNORM, UNORM, UNORM, 8, 0),
135 SAMPLER_VIEW },
136
137 [PIPE_FORMAT_A8_UNORM] = { NV50TCL_RT_FORMAT_A8_UNORM,
138 A_(ZERO, ZERO, ZERO, C0, UNORM, UNORM, UNORM, UNORM, 8, 0),
139 SAMPLER_VIEW | RENDER_TARGET },
140
141 [PIPE_FORMAT_L8A8_UNORM] = { 0,
142 A_(C0, C0, C0, C1, UNORM, UNORM, UNORM, UNORM, 8_8, 0),
143 SAMPLER_VIEW },
144
145 [PIPE_FORMAT_L8A8_SRGB] = { 0,
146 A_(C0, C0, C0, C1, UNORM, UNORM, UNORM, UNORM, 8_8, 0),
147 SAMPLER_VIEW },
148
149 /* DXT, RGTC */
150
151 [PIPE_FORMAT_DXT1_RGB] = { 0,
152 B_(C0, C1, C2, ONE, UNORM, UNORM, UNORM, UNORM, DXT1, 0),
153 SAMPLER_VIEW },
154
155 [PIPE_FORMAT_DXT1_RGBA] = { 0,
156 B_(C0, C1, C2, C3, UNORM, UNORM, UNORM, UNORM, DXT1, 0),
157 SAMPLER_VIEW },
158
159 [PIPE_FORMAT_DXT3_RGBA] = { 0,
160 B_(C0, C1, C2, C3, UNORM, UNORM, UNORM, UNORM, DXT3, 0),
161 SAMPLER_VIEW },
162
163 [PIPE_FORMAT_DXT5_RGBA] = { 0,
164 B_(C0, C1, C2, C3, UNORM, UNORM, UNORM, UNORM, DXT5, 0),
165 SAMPLER_VIEW },
166
167 [PIPE_FORMAT_RGTC1_UNORM] = { 0,
168 B_(C0, ZERO, ZERO, ONE, UNORM, UNORM, UNORM, UNORM, RGTC1, 0),
169 SAMPLER_VIEW },
170
171 [PIPE_FORMAT_RGTC1_SNORM] = { 0,
172 B_(C0, ZERO, ZERO, ONE, SNORM, SNORM, SNORM, SNORM, RGTC1, 0),
173 SAMPLER_VIEW },
174
175 [PIPE_FORMAT_RGTC2_UNORM] = { 0,
176 B_(C0, C1, ZERO, ONE, UNORM, UNORM, UNORM, UNORM, RGTC2, 0),
177 SAMPLER_VIEW },
178
179 [PIPE_FORMAT_RGTC2_SNORM] = { 0,
180 B_(C0, C1, ZERO, ONE, SNORM, SNORM, SNORM, SNORM, RGTC2, 0),
181 SAMPLER_VIEW },
182
183 /* FLOAT 16 */
184
185 [PIPE_FORMAT_R16G16B16A16_FLOAT] = { NV50TCL_RT_FORMAT_R16G16B16A16_FLOAT,
186 A_(C0, C1, C2, C3, FLOAT, FLOAT, FLOAT, FLOAT, 16_16_16_16, 0),
187 VERTEX_BUFFER | SAMPLER_VIEW | RENDER_TARGET },
188
189 [PIPE_FORMAT_R16G16B16_FLOAT] = { NV50TCL_RT_FORMAT_R16G16B16X16_FLOAT,
190 A_(C0, C1, C2, ONE, FLOAT, FLOAT, FLOAT, FLOAT, 16_16_16, 0),
191 VERTEX_BUFFER | SAMPLER_VIEW | RENDER_TARGET },
192
193 [PIPE_FORMAT_R16G16_FLOAT] = { NV50TCL_RT_FORMAT_R16G16_FLOAT,
194 A_(C0, C1, ZERO, ONE, FLOAT, FLOAT, FLOAT, FLOAT, 16_16, 0),
195 VERTEX_BUFFER | SAMPLER_VIEW | RENDER_TARGET },
196
197 [PIPE_FORMAT_R16_FLOAT] = { NV50TCL_RT_FORMAT_R16_FLOAT,
198 A_(C0, ZERO, ZERO, ONE, FLOAT, FLOAT, FLOAT, FLOAT, 16, 0),
199 VERTEX_BUFFER | SAMPLER_VIEW | RENDER_TARGET },
200
201 /* FLOAT 32 */
202
203 [PIPE_FORMAT_R32G32B32A32_FLOAT] = { NV50TCL_RT_FORMAT_R32G32B32A32_FLOAT,
204 A_(C0, C1, C2, C3, FLOAT, FLOAT, FLOAT, FLOAT, 32_32_32_32, 0),
205 VERTEX_BUFFER | SAMPLER_VIEW | RENDER_TARGET },
206
207 [PIPE_FORMAT_R32G32B32_FLOAT] = { NV50TCL_RT_FORMAT_R32G32B32X32_FLOAT,
208 A_(C0, C1, C2, ONE, FLOAT, FLOAT, FLOAT, FLOAT, 32_32_32, 0),
209 VERTEX_BUFFER | SAMPLER_VIEW | RENDER_TARGET },
210
211 [PIPE_FORMAT_R32G32_FLOAT] = { NV50TCL_RT_FORMAT_R32G32_FLOAT,
212 A_(C0, C1, ZERO, ONE, FLOAT, FLOAT, FLOAT, FLOAT, 32_32, 0),
213 VERTEX_BUFFER | SAMPLER_VIEW | RENDER_TARGET },
214
215 [PIPE_FORMAT_R32_FLOAT] = { NV50TCL_RT_FORMAT_R32_FLOAT,
216 A_(C0, ZERO, ZERO, ONE, FLOAT, FLOAT, FLOAT, FLOAT, 32, 0),
217 VERTEX_BUFFER | SAMPLER_VIEW | RENDER_TARGET },
218
219 /* ODD FORMATS */
220
221 [PIPE_FORMAT_R11G11B10_FLOAT] = { NV50TCL_RT_FORMAT_B10G11R11_FLOAT,
222 B_(C0, C1, C2, ONE, FLOAT, FLOAT, FLOAT, FLOAT, 10_11_11, 0),
223 SAMPLER_VIEW | RENDER_TARGET },
224
225 [PIPE_FORMAT_R9G9B9E5_FLOAT] = { 0,
226 B_(C0, C1, C2, ONE, FLOAT, FLOAT, FLOAT, FLOAT, 5_9_9_9, 0),
227 SAMPLER_VIEW },
228
229 /* SNORM 32 */
230
231 [PIPE_FORMAT_R32G32B32A32_SNORM] = { 0,
232 A_(C0, C1, C2, C3, FLOAT, FLOAT, FLOAT, FLOAT, 32_32_32_32, 0),
233 VERTEX_BUFFER | SAMPLER_VIEW },
234
235 [PIPE_FORMAT_R32G32B32_SNORM] = { 0,
236 A_(C0, C1, C2, ONE, SNORM, SNORM, SNORM, SNORM, 32_32_32, 0),
237 VERTEX_BUFFER | SAMPLER_VIEW },
238
239 [PIPE_FORMAT_R32G32_SNORM] = { 0,
240 A_(C0, C1, ZERO, ONE, SNORM, SNORM, SNORM, SNORM, 32_32, 0),
241 VERTEX_BUFFER | SAMPLER_VIEW },
242
243 [PIPE_FORMAT_R32_SNORM] = { 0,
244 A_(C0, ZERO, ZERO, ONE, SNORM, SNORM, SNORM, SNORM, 32, 0),
245 VERTEX_BUFFER | SAMPLER_VIEW },
246
247 /* UNORM 32 */
248
249 [PIPE_FORMAT_R32G32B32A32_UNORM] = { 0,
250 A_(C0, C1, C2, C3, FLOAT, FLOAT, FLOAT, FLOAT, 32_32_32_32, 0),
251 VERTEX_BUFFER | SAMPLER_VIEW },
252
253 [PIPE_FORMAT_R32G32B32_UNORM] = { 0,
254 A_(C0, C1, C2, ONE, UNORM, UNORM, UNORM, UNORM, 32_32_32, 0),
255 VERTEX_BUFFER | SAMPLER_VIEW },
256
257 [PIPE_FORMAT_R32G32_UNORM] = { 0,
258 A_(C0, C1, ZERO, ONE, UNORM, UNORM, UNORM, UNORM, 32_32, 0),
259 VERTEX_BUFFER | SAMPLER_VIEW },
260
261 [PIPE_FORMAT_R32_UNORM] = { 0,
262 A_(C0, ZERO, ZERO, ONE, UNORM, UNORM, UNORM, UNORM, 32, 0),
263 VERTEX_BUFFER | SAMPLER_VIEW },
264
265 /* SNORM 16 */
266
267 [PIPE_FORMAT_R16G16B16A16_SNORM] = { NV50TCL_RT_FORMAT_R16G16B16A16_SNORM,
268 A_(C0, C1, C2, C3, SNORM, SNORM, SNORM, SNORM, 16_16_16_16, 0),
269 VERTEX_BUFFER | SAMPLER_VIEW | RENDER_TARGET },
270
271 [PIPE_FORMAT_R16G16B16_SNORM] = { 0,
272 A_(C0, C1, C2, ONE, SNORM, SNORM, SNORM, SNORM, 16_16_16, 0),
273 VERTEX_BUFFER | SAMPLER_VIEW },
274
275 [PIPE_FORMAT_R16G16_SNORM] = { NV50TCL_RT_FORMAT_R16G16_SNORM,
276 A_(C0, C1, C2, C3, SNORM, SNORM, SNORM, SNORM, 16_16, 0),
277 VERTEX_BUFFER | SAMPLER_VIEW | RENDER_TARGET },
278
279 [PIPE_FORMAT_R16_SNORM] = { 0,
280 A_(C0, ZERO, ZERO, ONE, SNORM, SNORM, SNORM, SNORM, 16, 0),
281 VERTEX_BUFFER | SAMPLER_VIEW },
282
283 /* UNORM 16 */
284
285 [PIPE_FORMAT_R16G16B16A16_UNORM] = { NV50TCL_RT_FORMAT_R16G16B16A16_UNORM,
286 A_(C0, C1, C2, C3, UNORM, UNORM, UNORM, UNORM, 16_16_16_16, 0),
287 VERTEX_BUFFER | SAMPLER_VIEW | RENDER_TARGET },
288
289 [PIPE_FORMAT_R16G16B16_UNORM] = { 0,
290 A_(C0, C1, C2, ONE, UNORM, UNORM, UNORM, UNORM, 16_16_16, 0),
291 VERTEX_BUFFER | SAMPLER_VIEW },
292
293 [PIPE_FORMAT_R16G16_UNORM] = { NV50TCL_RT_FORMAT_R16G16_UNORM,
294 A_(C0, C1, C2, C3, UNORM, UNORM, UNORM, UNORM, 16_16, 0),
295 VERTEX_BUFFER | SAMPLER_VIEW | RENDER_TARGET },
296
297 [PIPE_FORMAT_R16_UNORM] = { 0,
298 A_(C0, ZERO, ZERO, ONE, UNORM, UNORM, UNORM, UNORM, 16, 0),
299 VERTEX_BUFFER | SAMPLER_VIEW },
300
301 /* SNORM 8 */
302
303 [PIPE_FORMAT_R8G8B8A8_SNORM] = { NV50TCL_RT_FORMAT_A8B8G8R8_SNORM,
304 A_(C0, C1, C2, C3, SNORM, SNORM, SNORM, SNORM, 8_8_8_8, 0),
305 VERTEX_BUFFER | SAMPLER_VIEW | RENDER_TARGET },
306
307 [PIPE_FORMAT_R8G8B8_SNORM] = { 0,
308 A_(C0, C1, C2, ONE, SNORM, SNORM, SNORM, SNORM, 8_8_8, 0),
309 VERTEX_BUFFER | SAMPLER_VIEW },
310
311 [PIPE_FORMAT_R8G8_SNORM] = { NV50TCL_RT_FORMAT_R8G8_SNORM,
312 A_(C0, C1, ZERO, ONE, SNORM, SNORM, SNORM, SNORM, 8_8, 0),
313 VERTEX_BUFFER | SAMPLER_VIEW | RENDER_TARGET },
314
315 [PIPE_FORMAT_R8_SNORM] = { NV50TCL_RT_FORMAT_R8_SNORM,
316 A_(C0, ZERO, ZERO, ONE, SNORM, SNORM, SNORM, SNORM, 8, 0),
317 VERTEX_BUFFER | SAMPLER_VIEW | RENDER_TARGET },
318
319 /* UNORM 8 */
320
321 [PIPE_FORMAT_R8G8B8A8_UNORM] = { NV50TCL_RT_FORMAT_A8B8G8R8_UNORM,
322 A_(C0, C1, C2, C3, UNORM, UNORM, UNORM, UNORM, 8_8_8_8, 0),
323 VERTEX_BUFFER | SAMPLER_VIEW | RENDER_TARGET },
324
325 [PIPE_FORMAT_R8G8B8A8_SRGB] = { NV50TCL_RT_FORMAT_A8B8G8R8_SRGB,
326 A_(C0, C1, C2, C3, UNORM, UNORM, UNORM, UNORM, 8_8_8_8, 0),
327 SAMPLER_VIEW | RENDER_TARGET },
328
329 [PIPE_FORMAT_R8G8B8_UNORM] = { NV50TCL_RT_FORMAT_X8B8G8R8_UNORM,
330 A_(C0, C1, C2, ONE, UNORM, UNORM, UNORM, UNORM, 8_8_8, 0),
331 VERTEX_BUFFER | SAMPLER_VIEW | RENDER_TARGET },
332
333 [PIPE_FORMAT_R8G8B8_SRGB] = { NV50TCL_RT_FORMAT_X8B8G8R8_SRGB,
334 A_(C0, C1, C2, ONE, UNORM, UNORM, UNORM, UNORM, 8_8_8, 0),
335 SAMPLER_VIEW | RENDER_TARGET },
336
337 [PIPE_FORMAT_R8G8_UNORM] = { NV50TCL_RT_FORMAT_R8G8_UNORM,
338 A_(C0, C1, ZERO, ONE, UNORM, UNORM, UNORM, UNORM, 8_8, 0),
339 VERTEX_BUFFER | SAMPLER_VIEW | RENDER_TARGET },
340
341 [PIPE_FORMAT_R8_UNORM] = { NV50TCL_RT_FORMAT_R8_UNORM,
342 A_(C0, ZERO, ZERO, ONE, UNORM, UNORM, UNORM, UNORM, 8, 0),
343 VERTEX_BUFFER | SAMPLER_VIEW | RENDER_TARGET },
344
345 /* SSCALED 32 */
346
347 [PIPE_FORMAT_R32G32B32A32_SSCALED] = { 0,
348 A_(C0, C1, C2, C3, SSCALED, SSCALED, SSCALED, SSCALED, 32_32_32_32, 0),
349 VERTEX_BUFFER | SAMPLER_VIEW },
350
351 [PIPE_FORMAT_R32G32B32_SSCALED] = { 0,
352 A_(C0, C1, C2, ONE, SSCALED, SSCALED, SSCALED, SSCALED, 32_32_32, 0),
353 VERTEX_BUFFER | SAMPLER_VIEW },
354
355 [PIPE_FORMAT_R32G32_SSCALED] = { 0,
356 A_(C0, C1, ZERO, ONE, SSCALED, SSCALED, SSCALED, SSCALED, 32_32, 0),
357 VERTEX_BUFFER | SAMPLER_VIEW },
358
359 [PIPE_FORMAT_R32_SSCALED] = { 0,
360 A_(C0, ZERO, ZERO, ONE, SSCALED, SSCALED, SSCALED, SSCALED, 32, 0),
361 VERTEX_BUFFER | SAMPLER_VIEW },
362
363 /* USCALED 32 */
364
365 [PIPE_FORMAT_R32G32B32A32_USCALED] = { 0,
366 A_(C0, C1, C2, C3, USCALED, USCALED, USCALED, USCALED, 32_32_32_32, 0),
367 VERTEX_BUFFER | SAMPLER_VIEW },
368
369 [PIPE_FORMAT_R32G32B32_USCALED] = { 0,
370 A_(C0, C1, C2, ONE, USCALED, USCALED, USCALED, USCALED, 32_32_32, 0),
371 VERTEX_BUFFER | SAMPLER_VIEW },
372
373 [PIPE_FORMAT_R32G32_USCALED] = { 0,
374 A_(C0, C1, ZERO, ONE, USCALED, USCALED, USCALED, USCALED, 32_32, 0),
375 VERTEX_BUFFER | SAMPLER_VIEW },
376
377 [PIPE_FORMAT_R32_USCALED] = { 0,
378 A_(C0, ZERO, ZERO, ONE, USCALED, USCALED, USCALED, USCALED, 32, 0),
379 VERTEX_BUFFER | SAMPLER_VIEW },
380
381 /* SSCALED 16 */
382
383 [PIPE_FORMAT_R16G16B16A16_SSCALED] = { 0,
384 A_(C0, C1, C2, C3, SSCALED, SSCALED, SSCALED, SSCALED, 16_16_16_16, 0),
385 VERTEX_BUFFER | SAMPLER_VIEW },
386
387 [PIPE_FORMAT_R16G16B16_SSCALED] = { 0,
388 A_(C0, C1, C2, ONE, SSCALED, SSCALED, SSCALED, SSCALED, 16_16_16, 0),
389 VERTEX_BUFFER | SAMPLER_VIEW },
390
391 [PIPE_FORMAT_R16G16_SSCALED] = { 0,
392 A_(C0, C1, ZERO, ONE, SSCALED, SSCALED, SSCALED, SSCALED, 16_16, 0),
393 VERTEX_BUFFER | SAMPLER_VIEW },
394
395 [PIPE_FORMAT_R16_SSCALED] = { 0,
396 A_(C0, ZERO, ZERO, ONE, SSCALED, SSCALED, SSCALED, SSCALED, 16, 0),
397 VERTEX_BUFFER | SAMPLER_VIEW },
398
399 /* USCALED 16 */
400
401 [PIPE_FORMAT_R16G16B16A16_USCALED] = { 0,
402 A_(C0, C1, C2, C3, USCALED, USCALED, USCALED, USCALED, 16_16_16_16, 0),
403 VERTEX_BUFFER | SAMPLER_VIEW },
404
405 [PIPE_FORMAT_R16G16B16_USCALED] = { 0,
406 A_(C0, C1, C2, ONE, USCALED, USCALED, USCALED, USCALED, 16_16_16, 0),
407 VERTEX_BUFFER | SAMPLER_VIEW },
408
409 [PIPE_FORMAT_R16G16_USCALED] = { 0,
410 A_(C0, C1, ZERO, ONE, USCALED, USCALED, USCALED, USCALED, 16_16, 0),
411 VERTEX_BUFFER | SAMPLER_VIEW },
412
413 [PIPE_FORMAT_R16_USCALED] = { 0,
414 A_(C0, ZERO, ZERO, ONE, USCALED, USCALED, USCALED, USCALED, 16, 0),
415 VERTEX_BUFFER | SAMPLER_VIEW },
416
417 /* SSCALED 8 */
418
419 [PIPE_FORMAT_R8G8B8A8_SSCALED] = { 0,
420 A_(C0, C1, C2, C3, SSCALED, SSCALED, SSCALED, SSCALED, 8_8_8_8, 0),
421 VERTEX_BUFFER | SAMPLER_VIEW },
422
423 [PIPE_FORMAT_R8G8B8_SSCALED] = { 0,
424 A_(C0, C1, C2, ONE, SSCALED, SSCALED, SSCALED, SSCALED, 8_8_8, 0),
425 VERTEX_BUFFER | SAMPLER_VIEW },
426
427 [PIPE_FORMAT_R8G8_SSCALED] = { 0,
428 A_(C0, C1, ZERO, ONE, SSCALED, SSCALED, SSCALED, SSCALED, 8_8, 0),
429 VERTEX_BUFFER | SAMPLER_VIEW },
430
431 [PIPE_FORMAT_R8_SSCALED] = { 0,
432 A_(C0, ZERO, ZERO, ONE, SSCALED, SSCALED, SSCALED, SSCALED, 8, 0),
433 VERTEX_BUFFER | SAMPLER_VIEW },
434
435 /* USCALED 8 */
436
437 [PIPE_FORMAT_R8G8B8A8_USCALED] = { 0,
438 A_(C0, C1, C2, C3, USCALED, USCALED, USCALED, USCALED, 8_8_8_8, 0),
439 VERTEX_BUFFER | SAMPLER_VIEW },
440
441 [PIPE_FORMAT_R8G8B8_USCALED] = { 0,
442 A_(C0, C1, C2, ONE, USCALED, USCALED, USCALED, USCALED, 8_8_8, 0),
443 VERTEX_BUFFER | SAMPLER_VIEW },
444
445 [PIPE_FORMAT_R8G8_USCALED] = { 0,
446 A_(C0, C1, ZERO, ONE, USCALED, USCALED, USCALED, USCALED, 8_8, 0),
447 VERTEX_BUFFER | SAMPLER_VIEW },
448
449 [PIPE_FORMAT_R8_USCALED] = { 0,
450 A_(C0, ZERO, ZERO, ONE, USCALED, USCALED, USCALED, USCALED, 8, 0),
451 VERTEX_BUFFER | SAMPLER_VIEW },
452 };