Merge branch '7.8'
[mesa.git] / src / gallium / drivers / nv50 / nv50_state.c
1 /*
2 * Copyright 2008 Ben Skeggs
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 "pipe/p_state.h"
24 #include "pipe/p_defines.h"
25 #include "util/u_inlines.h"
26
27 #include "tgsi/tgsi_parse.h"
28
29 #include "nv50_context.h"
30 #include "nv50_texture.h"
31
32 #include "nouveau/nouveau_stateobj.h"
33
34 static INLINE uint32_t
35 nv50_colormask(unsigned mask)
36 {
37 uint32_t cmask = 0;
38
39 if (mask & PIPE_MASK_R)
40 cmask |= 0x0001;
41 if (mask & PIPE_MASK_G)
42 cmask |= 0x0010;
43 if (mask & PIPE_MASK_B)
44 cmask |= 0x0100;
45 if (mask & PIPE_MASK_A)
46 cmask |= 0x1000;
47
48 return cmask;
49 }
50
51 static void *
52 nv50_blend_state_create(struct pipe_context *pipe,
53 const struct pipe_blend_state *cso)
54 {
55 struct nouveau_stateobj *so = so_new(5, 24, 0);
56 struct nouveau_grobj *tesla = nv50_context(pipe)->screen->tesla;
57 struct nv50_blend_stateobj *bso = CALLOC_STRUCT(nv50_blend_stateobj);
58 unsigned i, blend_enabled = 0;
59
60 /*XXX ignored:
61 * - dither
62 */
63
64 so_method(so, tesla, NV50TCL_BLEND_ENABLE(0), 8);
65 if (cso->independent_blend_enable) {
66 for (i = 0; i < 8; ++i) {
67 so_data(so, cso->rt[i].blend_enable);
68 if (cso->rt[i].blend_enable)
69 blend_enabled = 1;
70 }
71 } else
72 if (cso->rt[0].blend_enable) {
73 blend_enabled = 1;
74 for (i = 0; i < 8; i++)
75 so_data(so, 1);
76 } else {
77 for (i = 0; i < 8; i++)
78 so_data(so, 0);
79 }
80 if (blend_enabled) {
81 so_method(so, tesla, NV50TCL_BLEND_EQUATION_RGB, 5);
82 so_data (so, nvgl_blend_eqn(cso->rt[0].rgb_func));
83 so_data (so, 0x4000 | nvgl_blend_func(cso->rt[0].rgb_src_factor));
84 so_data (so, 0x4000 | nvgl_blend_func(cso->rt[0].rgb_dst_factor));
85 so_data (so, nvgl_blend_eqn(cso->rt[0].alpha_func));
86 so_data (so, 0x4000 | nvgl_blend_func(cso->rt[0].alpha_src_factor));
87 so_method(so, tesla, NV50TCL_BLEND_FUNC_DST_ALPHA, 1);
88 so_data (so, 0x4000 | nvgl_blend_func(cso->rt[0].alpha_dst_factor));
89 }
90
91 if (cso->logicop_enable == 0 ) {
92 so_method(so, tesla, NV50TCL_LOGIC_OP_ENABLE, 1);
93 so_data (so, 0);
94 } else {
95 so_method(so, tesla, NV50TCL_LOGIC_OP_ENABLE, 2);
96 so_data (so, 1);
97 so_data (so, nvgl_logicop_func(cso->logicop_func));
98 }
99
100 so_method(so, tesla, NV50TCL_COLOR_MASK(0), 8);
101 if (cso->independent_blend_enable)
102 for (i = 0; i < 8; ++i)
103 so_data(so, nv50_colormask(cso->rt[i].colormask));
104 else {
105 uint32_t cmask = nv50_colormask(cso->rt[0].colormask);
106 for (i = 0; i < 8; i++)
107 so_data(so, cmask);
108 }
109
110 bso->pipe = *cso;
111 so_ref(so, &bso->so);
112 so_ref(NULL, &so);
113 return (void *)bso;
114 }
115
116 static void
117 nv50_blend_state_bind(struct pipe_context *pipe, void *hwcso)
118 {
119 struct nv50_context *nv50 = nv50_context(pipe);
120
121 nv50->blend = hwcso;
122 nv50->dirty |= NV50_NEW_BLEND;
123 }
124
125 static void
126 nv50_blend_state_delete(struct pipe_context *pipe, void *hwcso)
127 {
128 struct nv50_blend_stateobj *bso = hwcso;
129
130 so_ref(NULL, &bso->so);
131 FREE(bso);
132 }
133
134 static INLINE unsigned
135 wrap_mode(unsigned wrap)
136 {
137 switch (wrap) {
138 case PIPE_TEX_WRAP_REPEAT:
139 return NV50TSC_1_0_WRAPS_REPEAT;
140 case PIPE_TEX_WRAP_MIRROR_REPEAT:
141 return NV50TSC_1_0_WRAPS_MIRROR_REPEAT;
142 case PIPE_TEX_WRAP_CLAMP_TO_EDGE:
143 return NV50TSC_1_0_WRAPS_CLAMP_TO_EDGE;
144 case PIPE_TEX_WRAP_CLAMP_TO_BORDER:
145 return NV50TSC_1_0_WRAPS_CLAMP_TO_BORDER;
146 case PIPE_TEX_WRAP_CLAMP:
147 return NV50TSC_1_0_WRAPS_CLAMP;
148 case PIPE_TEX_WRAP_MIRROR_CLAMP_TO_EDGE:
149 return NV50TSC_1_0_WRAPS_MIRROR_CLAMP_TO_EDGE;
150 case PIPE_TEX_WRAP_MIRROR_CLAMP_TO_BORDER:
151 return NV50TSC_1_0_WRAPS_MIRROR_CLAMP_TO_BORDER;
152 case PIPE_TEX_WRAP_MIRROR_CLAMP:
153 return NV50TSC_1_0_WRAPS_MIRROR_CLAMP;
154 default:
155 NOUVEAU_ERR("unknown wrap mode: %d\n", wrap);
156 return NV50TSC_1_0_WRAPS_REPEAT;
157 }
158 }
159 static void *
160 nv50_sampler_state_create(struct pipe_context *pipe,
161 const struct pipe_sampler_state *cso)
162 {
163 struct nv50_sampler_stateobj *sso = CALLOC(1, sizeof(*sso));
164 unsigned *tsc = sso->tsc;
165 float limit;
166
167 tsc[0] = (0x00026000 |
168 (wrap_mode(cso->wrap_s) << 0) |
169 (wrap_mode(cso->wrap_t) << 3) |
170 (wrap_mode(cso->wrap_r) << 6));
171
172 switch (cso->mag_img_filter) {
173 case PIPE_TEX_FILTER_LINEAR:
174 tsc[1] |= NV50TSC_1_1_MAGF_LINEAR;
175 break;
176 case PIPE_TEX_FILTER_NEAREST:
177 default:
178 tsc[1] |= NV50TSC_1_1_MAGF_NEAREST;
179 break;
180 }
181
182 switch (cso->min_img_filter) {
183 case PIPE_TEX_FILTER_LINEAR:
184 tsc[1] |= NV50TSC_1_1_MINF_LINEAR;
185 break;
186 case PIPE_TEX_FILTER_NEAREST:
187 default:
188 tsc[1] |= NV50TSC_1_1_MINF_NEAREST;
189 break;
190 }
191
192 switch (cso->min_mip_filter) {
193 case PIPE_TEX_MIPFILTER_LINEAR:
194 tsc[1] |= NV50TSC_1_1_MIPF_LINEAR;
195 break;
196 case PIPE_TEX_MIPFILTER_NEAREST:
197 tsc[1] |= NV50TSC_1_1_MIPF_NEAREST;
198 break;
199 case PIPE_TEX_MIPFILTER_NONE:
200 default:
201 tsc[1] |= NV50TSC_1_1_MIPF_NONE;
202 break;
203 }
204
205 if (cso->max_anisotropy >= 16)
206 tsc[0] |= (7 << 20);
207 else
208 if (cso->max_anisotropy >= 12)
209 tsc[0] |= (6 << 20);
210 else {
211 tsc[0] |= (cso->max_anisotropy >> 1) << 20;
212
213 if (cso->max_anisotropy >= 4)
214 tsc[1] |= NV50TSC_1_1_UNKN_ANISO_35;
215 else
216 if (cso->max_anisotropy >= 2)
217 tsc[1] |= NV50TSC_1_1_UNKN_ANISO_15;
218 }
219
220 if (cso->compare_mode == PIPE_TEX_COMPARE_R_TO_TEXTURE) {
221 /* XXX: must be deactivated for non-shadow textures */
222 tsc[0] |= (1 << 9);
223 tsc[0] |= (nvgl_comparison_op(cso->compare_func) & 0x7) << 10;
224 }
225
226 limit = CLAMP(cso->lod_bias, -16.0, 15.0);
227 tsc[1] |= ((int)(limit * 256.0) & 0x1fff) << 12;
228
229 tsc[2] |= ((int)CLAMP(cso->max_lod, 0.0, 15.0) << 20) |
230 ((int)CLAMP(cso->min_lod, 0.0, 15.0) << 8);
231
232 tsc[4] = fui(cso->border_color[0]);
233 tsc[5] = fui(cso->border_color[1]);
234 tsc[6] = fui(cso->border_color[2]);
235 tsc[7] = fui(cso->border_color[3]);
236
237 sso->normalized = cso->normalized_coords;
238 return (void *)sso;
239 }
240
241 /* type == 0 for VPs, 1 for GPs, 2 for FPs, which is how the
242 * relevant tesla methods are indexed (NV50TCL_BIND_TSC etc.)
243 */
244 static INLINE void
245 nv50_sampler_state_bind(struct pipe_context *pipe, unsigned type,
246 unsigned nr, void **sampler)
247 {
248 struct nv50_context *nv50 = nv50_context(pipe);
249
250 memcpy(nv50->sampler[type], sampler, nr * sizeof(void *));
251
252 nv50->sampler_nr[type] = nr;
253 nv50->dirty |= NV50_NEW_SAMPLER;
254 }
255
256 static void
257 nv50_vp_sampler_state_bind(struct pipe_context *pipe, unsigned nr, void **s)
258 {
259 nv50_sampler_state_bind(pipe, 0, nr, s);
260 }
261
262 static void
263 nv50_fp_sampler_state_bind(struct pipe_context *pipe, unsigned nr, void **s)
264 {
265 nv50_sampler_state_bind(pipe, 2, nr, s);
266 }
267
268 static void
269 nv50_sampler_state_delete(struct pipe_context *pipe, void *hwcso)
270 {
271 FREE(hwcso);
272 }
273
274 static INLINE void
275 nv50_set_sampler_views(struct pipe_context *pipe, unsigned p,
276 unsigned nr,
277 struct pipe_sampler_view **views)
278 {
279 struct nv50_context *nv50 = nv50_context(pipe);
280 unsigned i;
281
282 for (i = 0; i < nr; i++)
283 pipe_sampler_view_reference(&nv50->sampler_views[p][i],
284 views[i]);
285
286 for (i = nr; i < nv50->sampler_view_nr[p]; i++)
287 pipe_sampler_view_reference(&nv50->sampler_views[p][i], NULL);
288
289 nv50->sampler_view_nr[p] = nr;
290 nv50->dirty |= NV50_NEW_TEXTURE;
291 }
292
293 static void
294 nv50_set_vp_sampler_views(struct pipe_context *pipe,
295 unsigned nr,
296 struct pipe_sampler_view **views)
297 {
298 nv50_set_sampler_views(pipe, 0, nr, views);
299 }
300
301 static void
302 nv50_set_fp_sampler_views(struct pipe_context *pipe,
303 unsigned nr,
304 struct pipe_sampler_view **views)
305 {
306 nv50_set_sampler_views(pipe, 2, nr, views);
307 }
308
309 static void
310 nv50_sampler_view_destroy(struct pipe_context *pipe,
311 struct pipe_sampler_view *view)
312 {
313 pipe_texture_reference(&view->texture, NULL);
314 FREE(nv50_sampler_view(view));
315 }
316
317 static struct pipe_sampler_view *
318 nv50_create_sampler_view(struct pipe_context *pipe,
319 struct pipe_texture *texture,
320 const struct pipe_sampler_view *templ)
321 {
322 struct nv50_sampler_view *view = CALLOC_STRUCT(nv50_sampler_view);
323
324 view->pipe = *templ;
325 view->pipe.reference.count = 1;
326 view->pipe.texture = NULL;
327 pipe_texture_reference(&view->pipe.texture, texture);
328 view->pipe.context = pipe;
329
330 if (!nv50_tex_construct(view)) {
331 nv50_sampler_view_destroy(pipe, &view->pipe);
332 return NULL;
333 }
334 return &view->pipe;
335 }
336
337
338 static void *
339 nv50_rasterizer_state_create(struct pipe_context *pipe,
340 const struct pipe_rasterizer_state *cso)
341 {
342 struct nouveau_stateobj *so = so_new(16, 22, 0);
343 struct nouveau_grobj *tesla = nv50_context(pipe)->screen->tesla;
344 struct nv50_rasterizer_stateobj *rso =
345 CALLOC_STRUCT(nv50_rasterizer_stateobj);
346
347 /*XXX: ignored
348 * - light_twosize
349 * - point_smooth
350 * - multisample
351 * - point_sprite / sprite_coord_mode
352 */
353
354 so_method(so, tesla, NV50TCL_SCISSOR_ENABLE(0), 1);
355 so_data (so, cso->scissor);
356
357 so_method(so, tesla, NV50TCL_SHADE_MODEL, 1);
358 so_data (so, cso->flatshade ? NV50TCL_SHADE_MODEL_FLAT :
359 NV50TCL_SHADE_MODEL_SMOOTH);
360 so_method(so, tesla, NV50TCL_PROVOKING_VERTEX_LAST, 1);
361 so_data (so, cso->flatshade_first ? 0 : 1);
362
363 so_method(so, tesla, NV50TCL_VERTEX_TWO_SIDE_ENABLE, 1);
364 so_data (so, cso->light_twoside);
365
366 so_method(so, tesla, NV50TCL_LINE_WIDTH, 1);
367 so_data (so, fui(cso->line_width));
368 so_method(so, tesla, NV50TCL_LINE_SMOOTH_ENABLE, 1);
369 so_data (so, cso->line_smooth ? 1 : 0);
370 if (cso->line_stipple_enable) {
371 so_method(so, tesla, NV50TCL_LINE_STIPPLE_ENABLE, 1);
372 so_data (so, 1);
373 so_method(so, tesla, NV50TCL_LINE_STIPPLE_PATTERN, 1);
374 so_data (so, (cso->line_stipple_pattern << 8) |
375 cso->line_stipple_factor);
376 } else {
377 so_method(so, tesla, NV50TCL_LINE_STIPPLE_ENABLE, 1);
378 so_data (so, 0);
379 }
380
381 so_method(so, tesla, NV50TCL_POINT_SIZE, 1);
382 so_data (so, fui(cso->point_size));
383
384 so_method(so, tesla, NV50TCL_POINT_SPRITE_ENABLE, 1);
385 so_data (so, cso->point_quad_rasterization ? 1 : 0);
386
387 so_method(so, tesla, NV50TCL_POLYGON_MODE_FRONT, 3);
388 if (cso->front_winding == PIPE_WINDING_CCW) {
389 so_data(so, nvgl_polygon_mode(cso->fill_ccw));
390 so_data(so, nvgl_polygon_mode(cso->fill_cw));
391 } else {
392 so_data(so, nvgl_polygon_mode(cso->fill_cw));
393 so_data(so, nvgl_polygon_mode(cso->fill_ccw));
394 }
395 so_data(so, cso->poly_smooth ? 1 : 0);
396
397 so_method(so, tesla, NV50TCL_CULL_FACE_ENABLE, 3);
398 so_data (so, cso->cull_mode != PIPE_WINDING_NONE);
399 if (cso->front_winding == PIPE_WINDING_CCW) {
400 so_data(so, NV50TCL_FRONT_FACE_CCW);
401 switch (cso->cull_mode) {
402 case PIPE_WINDING_CCW:
403 so_data(so, NV50TCL_CULL_FACE_FRONT);
404 break;
405 case PIPE_WINDING_CW:
406 so_data(so, NV50TCL_CULL_FACE_BACK);
407 break;
408 case PIPE_WINDING_BOTH:
409 so_data(so, NV50TCL_CULL_FACE_FRONT_AND_BACK);
410 break;
411 default:
412 so_data(so, NV50TCL_CULL_FACE_BACK);
413 break;
414 }
415 } else {
416 so_data(so, NV50TCL_FRONT_FACE_CW);
417 switch (cso->cull_mode) {
418 case PIPE_WINDING_CCW:
419 so_data(so, NV50TCL_CULL_FACE_BACK);
420 break;
421 case PIPE_WINDING_CW:
422 so_data(so, NV50TCL_CULL_FACE_FRONT);
423 break;
424 case PIPE_WINDING_BOTH:
425 so_data(so, NV50TCL_CULL_FACE_FRONT_AND_BACK);
426 break;
427 default:
428 so_data(so, NV50TCL_CULL_FACE_BACK);
429 break;
430 }
431 }
432
433 so_method(so, tesla, NV50TCL_POLYGON_STIPPLE_ENABLE, 1);
434 so_data (so, cso->poly_stipple_enable ? 1 : 0);
435
436 so_method(so, tesla, NV50TCL_POLYGON_OFFSET_POINT_ENABLE, 3);
437 if ((cso->offset_cw && cso->fill_cw == PIPE_POLYGON_MODE_POINT) ||
438 (cso->offset_ccw && cso->fill_ccw == PIPE_POLYGON_MODE_POINT))
439 so_data(so, 1);
440 else
441 so_data(so, 0);
442 if ((cso->offset_cw && cso->fill_cw == PIPE_POLYGON_MODE_LINE) ||
443 (cso->offset_ccw && cso->fill_ccw == PIPE_POLYGON_MODE_LINE))
444 so_data(so, 1);
445 else
446 so_data(so, 0);
447 if ((cso->offset_cw && cso->fill_cw == PIPE_POLYGON_MODE_FILL) ||
448 (cso->offset_ccw && cso->fill_ccw == PIPE_POLYGON_MODE_FILL))
449 so_data(so, 1);
450 else
451 so_data(so, 0);
452
453 if (cso->offset_cw || cso->offset_ccw) {
454 so_method(so, tesla, NV50TCL_POLYGON_OFFSET_FACTOR, 1);
455 so_data (so, fui(cso->offset_scale));
456 so_method(so, tesla, NV50TCL_POLYGON_OFFSET_UNITS, 1);
457 so_data (so, fui(cso->offset_units * 2.0f));
458 }
459
460 rso->pipe = *cso;
461 so_ref(so, &rso->so);
462 so_ref(NULL, &so);
463 return (void *)rso;
464 }
465
466 static void
467 nv50_rasterizer_state_bind(struct pipe_context *pipe, void *hwcso)
468 {
469 struct nv50_context *nv50 = nv50_context(pipe);
470
471 nv50->rasterizer = hwcso;
472 nv50->dirty |= NV50_NEW_RASTERIZER;
473 }
474
475 static void
476 nv50_rasterizer_state_delete(struct pipe_context *pipe, void *hwcso)
477 {
478 struct nv50_rasterizer_stateobj *rso = hwcso;
479
480 so_ref(NULL, &rso->so);
481 FREE(rso);
482 }
483
484 static void *
485 nv50_depth_stencil_alpha_state_create(struct pipe_context *pipe,
486 const struct pipe_depth_stencil_alpha_state *cso)
487 {
488 struct nouveau_grobj *tesla = nv50_context(pipe)->screen->tesla;
489 struct nv50_zsa_stateobj *zsa = CALLOC_STRUCT(nv50_zsa_stateobj);
490 struct nouveau_stateobj *so = so_new(9, 21, 0);
491
492 so_method(so, tesla, NV50TCL_DEPTH_WRITE_ENABLE, 1);
493 so_data (so, cso->depth.writemask ? 1 : 0);
494 if (cso->depth.enabled) {
495 so_method(so, tesla, NV50TCL_DEPTH_TEST_ENABLE, 1);
496 so_data (so, 1);
497 so_method(so, tesla, NV50TCL_DEPTH_TEST_FUNC, 1);
498 so_data (so, nvgl_comparison_op(cso->depth.func));
499 } else {
500 so_method(so, tesla, NV50TCL_DEPTH_TEST_ENABLE, 1);
501 so_data (so, 0);
502 }
503
504 if (cso->stencil[0].enabled) {
505 so_method(so, tesla, NV50TCL_STENCIL_FRONT_ENABLE, 5);
506 so_data (so, 1);
507 so_data (so, nvgl_stencil_op(cso->stencil[0].fail_op));
508 so_data (so, nvgl_stencil_op(cso->stencil[0].zfail_op));
509 so_data (so, nvgl_stencil_op(cso->stencil[0].zpass_op));
510 so_data (so, nvgl_comparison_op(cso->stencil[0].func));
511 so_method(so, tesla, NV50TCL_STENCIL_FRONT_MASK, 2);
512 so_data (so, cso->stencil[0].writemask);
513 so_data (so, cso->stencil[0].valuemask);
514 } else {
515 so_method(so, tesla, NV50TCL_STENCIL_FRONT_ENABLE, 1);
516 so_data (so, 0);
517 }
518
519 if (cso->stencil[1].enabled) {
520 so_method(so, tesla, NV50TCL_STENCIL_BACK_ENABLE, 5);
521 so_data (so, 1);
522 so_data (so, nvgl_stencil_op(cso->stencil[1].fail_op));
523 so_data (so, nvgl_stencil_op(cso->stencil[1].zfail_op));
524 so_data (so, nvgl_stencil_op(cso->stencil[1].zpass_op));
525 so_data (so, nvgl_comparison_op(cso->stencil[1].func));
526 so_method(so, tesla, NV50TCL_STENCIL_BACK_MASK, 2);
527 so_data (so, cso->stencil[1].writemask);
528 so_data (so, cso->stencil[1].valuemask);
529 } else {
530 so_method(so, tesla, NV50TCL_STENCIL_BACK_ENABLE, 1);
531 so_data (so, 0);
532 }
533
534 if (cso->alpha.enabled) {
535 so_method(so, tesla, NV50TCL_ALPHA_TEST_ENABLE, 1);
536 so_data (so, 1);
537 so_method(so, tesla, NV50TCL_ALPHA_TEST_REF, 2);
538 so_data (so, fui(cso->alpha.ref_value));
539 so_data (so, nvgl_comparison_op(cso->alpha.func));
540 } else {
541 so_method(so, tesla, NV50TCL_ALPHA_TEST_ENABLE, 1);
542 so_data (so, 0);
543 }
544
545 zsa->pipe = *cso;
546 so_ref(so, &zsa->so);
547 so_ref(NULL, &so);
548 return (void *)zsa;
549 }
550
551 static void
552 nv50_depth_stencil_alpha_state_bind(struct pipe_context *pipe, void *hwcso)
553 {
554 struct nv50_context *nv50 = nv50_context(pipe);
555
556 nv50->zsa = hwcso;
557 nv50->dirty |= NV50_NEW_ZSA;
558 }
559
560 static void
561 nv50_depth_stencil_alpha_state_delete(struct pipe_context *pipe, void *hwcso)
562 {
563 struct nv50_zsa_stateobj *zsa = hwcso;
564
565 so_ref(NULL, &zsa->so);
566 FREE(zsa);
567 }
568
569 static void *
570 nv50_vp_state_create(struct pipe_context *pipe,
571 const struct pipe_shader_state *cso)
572 {
573 struct nv50_program *p = CALLOC_STRUCT(nv50_program);
574
575 p->pipe.tokens = tgsi_dup_tokens(cso->tokens);
576 p->type = PIPE_SHADER_VERTEX;
577 tgsi_scan_shader(p->pipe.tokens, &p->info);
578 return (void *)p;
579 }
580
581 static void
582 nv50_vp_state_bind(struct pipe_context *pipe, void *hwcso)
583 {
584 struct nv50_context *nv50 = nv50_context(pipe);
585
586 nv50->vertprog = hwcso;
587 nv50->dirty |= NV50_NEW_VERTPROG;
588 }
589
590 static void
591 nv50_vp_state_delete(struct pipe_context *pipe, void *hwcso)
592 {
593 struct nv50_context *nv50 = nv50_context(pipe);
594 struct nv50_program *p = hwcso;
595
596 nv50_program_destroy(nv50, p);
597 FREE((void *)p->pipe.tokens);
598 FREE(p);
599 }
600
601 static void *
602 nv50_fp_state_create(struct pipe_context *pipe,
603 const struct pipe_shader_state *cso)
604 {
605 struct nv50_program *p = CALLOC_STRUCT(nv50_program);
606
607 p->pipe.tokens = tgsi_dup_tokens(cso->tokens);
608 p->type = PIPE_SHADER_FRAGMENT;
609 tgsi_scan_shader(p->pipe.tokens, &p->info);
610 return (void *)p;
611 }
612
613 static void
614 nv50_fp_state_bind(struct pipe_context *pipe, void *hwcso)
615 {
616 struct nv50_context *nv50 = nv50_context(pipe);
617
618 nv50->fragprog = hwcso;
619 nv50->dirty |= NV50_NEW_FRAGPROG;
620 }
621
622 static void
623 nv50_fp_state_delete(struct pipe_context *pipe, void *hwcso)
624 {
625 struct nv50_context *nv50 = nv50_context(pipe);
626 struct nv50_program *p = hwcso;
627
628 nv50_program_destroy(nv50, p);
629 FREE((void *)p->pipe.tokens);
630 FREE(p);
631 }
632
633 static void *
634 nv50_gp_state_create(struct pipe_context *pipe,
635 const struct pipe_shader_state *cso)
636 {
637 struct nv50_program *p = CALLOC_STRUCT(nv50_program);
638
639 p->pipe.tokens = tgsi_dup_tokens(cso->tokens);
640 p->type = PIPE_SHADER_GEOMETRY;
641 tgsi_scan_shader(p->pipe.tokens, &p->info);
642 return (void *)p;
643 }
644
645 static void
646 nv50_gp_state_bind(struct pipe_context *pipe, void *hwcso)
647 {
648 struct nv50_context *nv50 = nv50_context(pipe);
649
650 nv50->fragprog = hwcso;
651 nv50->dirty |= NV50_NEW_GEOMPROG;
652 }
653
654 static void
655 nv50_gp_state_delete(struct pipe_context *pipe, void *hwcso)
656 {
657 struct nv50_context *nv50 = nv50_context(pipe);
658 struct nv50_program *p = hwcso;
659
660 nv50_program_destroy(nv50, p);
661 FREE((void *)p->pipe.tokens);
662 FREE(p);
663 }
664
665 static void
666 nv50_set_blend_color(struct pipe_context *pipe,
667 const struct pipe_blend_color *bcol)
668 {
669 struct nv50_context *nv50 = nv50_context(pipe);
670
671 nv50->blend_colour = *bcol;
672 nv50->dirty |= NV50_NEW_BLEND_COLOUR;
673 }
674
675 static void
676 nv50_set_stencil_ref(struct pipe_context *pipe,
677 const struct pipe_stencil_ref *sr)
678 {
679 struct nv50_context *nv50 = nv50_context(pipe);
680
681 nv50->stencil_ref = *sr;
682 nv50->dirty |= NV50_NEW_STENCIL_REF;
683 }
684
685 static void
686 nv50_set_clip_state(struct pipe_context *pipe,
687 const struct pipe_clip_state *clip)
688 {
689 }
690
691 static void
692 nv50_set_constant_buffer(struct pipe_context *pipe, uint shader, uint index,
693 struct pipe_buffer *buf )
694 {
695 struct nv50_context *nv50 = nv50_context(pipe);
696
697 if (shader == PIPE_SHADER_VERTEX) {
698 nv50->constbuf[PIPE_SHADER_VERTEX] = buf;
699 nv50->dirty |= NV50_NEW_VERTPROG_CB;
700 } else
701 if (shader == PIPE_SHADER_FRAGMENT) {
702 nv50->constbuf[PIPE_SHADER_FRAGMENT] = buf;
703 nv50->dirty |= NV50_NEW_FRAGPROG_CB;
704 } else
705 if (shader == PIPE_SHADER_GEOMETRY) {
706 nv50->constbuf[PIPE_SHADER_GEOMETRY] = buf;
707 nv50->dirty |= NV50_NEW_GEOMPROG_CB;
708 }
709 }
710
711 static void
712 nv50_set_framebuffer_state(struct pipe_context *pipe,
713 const struct pipe_framebuffer_state *fb)
714 {
715 struct nv50_context *nv50 = nv50_context(pipe);
716
717 nv50->framebuffer = *fb;
718 nv50->dirty |= NV50_NEW_FRAMEBUFFER;
719 }
720
721 static void
722 nv50_set_polygon_stipple(struct pipe_context *pipe,
723 const struct pipe_poly_stipple *stipple)
724 {
725 struct nv50_context *nv50 = nv50_context(pipe);
726
727 nv50->stipple = *stipple;
728 nv50->dirty |= NV50_NEW_STIPPLE;
729 }
730
731 static void
732 nv50_set_scissor_state(struct pipe_context *pipe,
733 const struct pipe_scissor_state *s)
734 {
735 struct nv50_context *nv50 = nv50_context(pipe);
736
737 nv50->scissor = *s;
738 nv50->dirty |= NV50_NEW_SCISSOR;
739 }
740
741 static void
742 nv50_set_viewport_state(struct pipe_context *pipe,
743 const struct pipe_viewport_state *vpt)
744 {
745 struct nv50_context *nv50 = nv50_context(pipe);
746
747 nv50->viewport = *vpt;
748 nv50->dirty |= NV50_NEW_VIEWPORT;
749 }
750
751 static void
752 nv50_set_vertex_buffers(struct pipe_context *pipe, unsigned count,
753 const struct pipe_vertex_buffer *vb)
754 {
755 struct nv50_context *nv50 = nv50_context(pipe);
756
757 memcpy(nv50->vtxbuf, vb, sizeof(*vb) * count);
758 nv50->vtxbuf_nr = count;
759
760 nv50->dirty |= NV50_NEW_ARRAYS;
761 }
762
763 static void *
764 nv50_vtxelts_state_create(struct pipe_context *pipe,
765 unsigned num_elements,
766 const struct pipe_vertex_element *elements)
767 {
768 struct nv50_vtxelt_stateobj *cso = CALLOC_STRUCT(nv50_vtxelt_stateobj);
769
770 assert(num_elements < 16); /* not doing fallbacks yet */
771 cso->num_elements = num_elements;
772 memcpy(cso->pipe, elements, num_elements * sizeof(*elements));
773
774 nv50_vtxelt_construct(cso);
775
776 return (void *)cso;
777 }
778
779 static void
780 nv50_vtxelts_state_delete(struct pipe_context *pipe, void *hwcso)
781 {
782 FREE(hwcso);
783 }
784
785 static void
786 nv50_vtxelts_state_bind(struct pipe_context *pipe, void *hwcso)
787 {
788 struct nv50_context *nv50 = nv50_context(pipe);
789
790 nv50->vtxelt = hwcso;
791 nv50->dirty |= NV50_NEW_ARRAYS;
792 }
793
794 void
795 nv50_init_state_functions(struct nv50_context *nv50)
796 {
797 nv50->pipe.create_blend_state = nv50_blend_state_create;
798 nv50->pipe.bind_blend_state = nv50_blend_state_bind;
799 nv50->pipe.delete_blend_state = nv50_blend_state_delete;
800
801 nv50->pipe.create_sampler_state = nv50_sampler_state_create;
802 nv50->pipe.delete_sampler_state = nv50_sampler_state_delete;
803 nv50->pipe.bind_fragment_sampler_states = nv50_fp_sampler_state_bind;
804 nv50->pipe.bind_vertex_sampler_states = nv50_vp_sampler_state_bind;
805 nv50->pipe.set_fragment_sampler_views = nv50_set_fp_sampler_views;
806 nv50->pipe.set_vertex_sampler_views = nv50_set_vp_sampler_views;
807 nv50->pipe.create_sampler_view = nv50_create_sampler_view;
808 nv50->pipe.sampler_view_destroy = nv50_sampler_view_destroy;
809
810 nv50->pipe.create_rasterizer_state = nv50_rasterizer_state_create;
811 nv50->pipe.bind_rasterizer_state = nv50_rasterizer_state_bind;
812 nv50->pipe.delete_rasterizer_state = nv50_rasterizer_state_delete;
813
814 nv50->pipe.create_depth_stencil_alpha_state =
815 nv50_depth_stencil_alpha_state_create;
816 nv50->pipe.bind_depth_stencil_alpha_state =
817 nv50_depth_stencil_alpha_state_bind;
818 nv50->pipe.delete_depth_stencil_alpha_state =
819 nv50_depth_stencil_alpha_state_delete;
820
821 nv50->pipe.create_vs_state = nv50_vp_state_create;
822 nv50->pipe.bind_vs_state = nv50_vp_state_bind;
823 nv50->pipe.delete_vs_state = nv50_vp_state_delete;
824
825 nv50->pipe.create_fs_state = nv50_fp_state_create;
826 nv50->pipe.bind_fs_state = nv50_fp_state_bind;
827 nv50->pipe.delete_fs_state = nv50_fp_state_delete;
828
829 nv50->pipe.create_gs_state = nv50_gp_state_create;
830 nv50->pipe.bind_gs_state = nv50_gp_state_bind;
831 nv50->pipe.delete_gs_state = nv50_gp_state_delete;
832
833 nv50->pipe.set_blend_color = nv50_set_blend_color;
834 nv50->pipe.set_stencil_ref = nv50_set_stencil_ref;
835 nv50->pipe.set_clip_state = nv50_set_clip_state;
836 nv50->pipe.set_constant_buffer = nv50_set_constant_buffer;
837 nv50->pipe.set_framebuffer_state = nv50_set_framebuffer_state;
838 nv50->pipe.set_polygon_stipple = nv50_set_polygon_stipple;
839 nv50->pipe.set_scissor_state = nv50_set_scissor_state;
840 nv50->pipe.set_viewport_state = nv50_set_viewport_state;
841
842 nv50->pipe.create_vertex_elements_state = nv50_vtxelts_state_create;
843 nv50->pipe.delete_vertex_elements_state = nv50_vtxelts_state_delete;
844 nv50->pipe.bind_vertex_elements_state = nv50_vtxelts_state_bind;
845
846 nv50->pipe.set_vertex_buffers = nv50_set_vertex_buffers;
847 }
848