gallium: Add a new clip_halfz rasterizer state.
[mesa.git] / src / gallium / auxiliary / draw / draw_pt_fetch_shade_pipeline_llvm.c
1 /**************************************************************************
2 *
3 * Copyright 2010 VMware, Inc.
4 * All Rights Reserved.
5 *
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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.
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19 * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
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21 * IN NO EVENT SHALL TUNGSTEN GRAPHICS AND/OR ITS SUPPLIERS BE LIABLE FOR
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23 * TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE
24 * SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
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27
28 #include "util/u_math.h"
29 #include "util/u_memory.h"
30 #include "util/u_prim.h"
31 #include "draw/draw_context.h"
32 #include "draw/draw_gs.h"
33 #include "draw/draw_vbuf.h"
34 #include "draw/draw_vertex.h"
35 #include "draw/draw_pt.h"
36 #include "draw/draw_prim_assembler.h"
37 #include "draw/draw_vs.h"
38 #include "draw/draw_llvm.h"
39 #include "gallivm/lp_bld_init.h"
40
41
42 struct llvm_middle_end {
43 struct draw_pt_middle_end base;
44 struct draw_context *draw;
45
46 struct pt_emit *emit;
47 struct pt_so_emit *so_emit;
48 struct pt_fetch *fetch;
49 struct pt_post_vs *post_vs;
50
51
52 unsigned vertex_data_offset;
53 unsigned vertex_size;
54 unsigned input_prim;
55 unsigned opt;
56
57 struct draw_llvm *llvm;
58 struct draw_llvm_variant *current_variant;
59 };
60
61
62 static void
63 llvm_middle_end_prepare_gs(struct llvm_middle_end *fpme)
64 {
65 struct draw_context *draw = fpme->draw;
66 struct draw_geometry_shader *gs = draw->gs.geometry_shader;
67 struct draw_gs_llvm_variant_key *key;
68 struct draw_gs_llvm_variant *variant = NULL;
69 struct draw_gs_llvm_variant_list_item *li;
70 struct llvm_geometry_shader *shader = llvm_geometry_shader(gs);
71 char store[DRAW_GS_LLVM_MAX_VARIANT_KEY_SIZE];
72 unsigned i;
73
74 key = draw_gs_llvm_make_variant_key(fpme->llvm, store);
75
76 /* Search shader's list of variants for the key */
77 li = first_elem(&shader->variants);
78 while (!at_end(&shader->variants, li)) {
79 if (memcmp(&li->base->key, key, shader->variant_key_size) == 0) {
80 variant = li->base;
81 break;
82 }
83 li = next_elem(li);
84 }
85
86 if (variant) {
87 /* found the variant, move to head of global list (for LRU) */
88 move_to_head(&fpme->llvm->gs_variants_list,
89 &variant->list_item_global);
90 }
91 else {
92 /* Need to create new variant */
93
94 /* First check if we've created too many variants. If so, free
95 * 25% of the LRU to avoid using too much memory.
96 */
97 if (fpme->llvm->nr_gs_variants >= DRAW_MAX_SHADER_VARIANTS) {
98 /*
99 * XXX: should we flush here ?
100 */
101 for (i = 0; i < DRAW_MAX_SHADER_VARIANTS / 4; i++) {
102 struct draw_gs_llvm_variant_list_item *item;
103 if (is_empty_list(&fpme->llvm->gs_variants_list)) {
104 break;
105 }
106 item = last_elem(&fpme->llvm->gs_variants_list);
107 assert(item);
108 assert(item->base);
109 draw_gs_llvm_destroy_variant(item->base);
110 }
111 }
112
113 variant = draw_gs_llvm_create_variant(fpme->llvm, gs->info.num_outputs, key);
114
115 if (variant) {
116 insert_at_head(&shader->variants, &variant->list_item_local);
117 insert_at_head(&fpme->llvm->gs_variants_list,
118 &variant->list_item_global);
119 fpme->llvm->nr_gs_variants++;
120 shader->variants_cached++;
121 }
122 }
123
124 gs->current_variant = variant;
125 }
126
127 /**
128 * Prepare/validate middle part of the vertex pipeline.
129 * NOTE: if you change this function, also look at the non-LLVM
130 * function fetch_pipeline_prepare() for similar changes.
131 */
132 static void
133 llvm_middle_end_prepare( struct draw_pt_middle_end *middle,
134 unsigned in_prim,
135 unsigned opt,
136 unsigned *max_vertices )
137 {
138 struct llvm_middle_end *fpme = (struct llvm_middle_end *)middle;
139 struct draw_context *draw = fpme->draw;
140 struct draw_vertex_shader *vs = draw->vs.vertex_shader;
141 struct draw_geometry_shader *gs = draw->gs.geometry_shader;
142 const unsigned out_prim = gs ? gs->output_primitive :
143 u_assembled_primitive(in_prim);
144
145 /* Add one to num_outputs because the pipeline occasionally tags on
146 * an additional texcoord, eg for AA lines.
147 */
148 const unsigned nr = MAX2( vs->info.num_inputs,
149 vs->info.num_outputs + 1 );
150
151 fpme->input_prim = in_prim;
152 fpme->opt = opt;
153
154 /* Always leave room for the vertex header whether we need it or
155 * not. It's hard to get rid of it in particular because of the
156 * viewport code in draw_pt_post_vs.c.
157 */
158 fpme->vertex_size = sizeof(struct vertex_header) + nr * 4 * sizeof(float);
159
160
161 draw_pt_post_vs_prepare( fpme->post_vs,
162 draw->clip_xy,
163 draw->clip_z,
164 draw->clip_user,
165 draw->guard_band_xy,
166 draw->identity_viewport,
167 draw->rasterizer->clip_halfz,
168 (draw->vs.edgeflag_output ? TRUE : FALSE) );
169
170 draw_pt_so_emit_prepare( fpme->so_emit, gs == NULL );
171
172 if (!(opt & PT_PIPELINE)) {
173 draw_pt_emit_prepare( fpme->emit,
174 out_prim,
175 max_vertices );
176
177 *max_vertices = MAX2( *max_vertices, 4096 );
178 }
179 else {
180 /* limit max fetches by limiting max_vertices */
181 *max_vertices = 4096;
182 }
183
184 /* return even number */
185 *max_vertices = *max_vertices & ~1;
186
187 /* Find/create the vertex shader variant */
188 {
189 struct draw_llvm_variant_key *key;
190 struct draw_llvm_variant *variant = NULL;
191 struct draw_llvm_variant_list_item *li;
192 struct llvm_vertex_shader *shader = llvm_vertex_shader(vs);
193 char store[DRAW_LLVM_MAX_VARIANT_KEY_SIZE];
194 unsigned i;
195
196 key = draw_llvm_make_variant_key(fpme->llvm, store);
197
198 /* Search shader's list of variants for the key */
199 li = first_elem(&shader->variants);
200 while (!at_end(&shader->variants, li)) {
201 if (memcmp(&li->base->key, key, shader->variant_key_size) == 0) {
202 variant = li->base;
203 break;
204 }
205 li = next_elem(li);
206 }
207
208 if (variant) {
209 /* found the variant, move to head of global list (for LRU) */
210 move_to_head(&fpme->llvm->vs_variants_list,
211 &variant->list_item_global);
212 }
213 else {
214 /* Need to create new variant */
215
216 /* First check if we've created too many variants. If so, free
217 * 25% of the LRU to avoid using too much memory.
218 */
219 if (fpme->llvm->nr_variants >= DRAW_MAX_SHADER_VARIANTS) {
220 /*
221 * XXX: should we flush here ?
222 */
223 for (i = 0; i < DRAW_MAX_SHADER_VARIANTS / 4; i++) {
224 struct draw_llvm_variant_list_item *item;
225 if (is_empty_list(&fpme->llvm->vs_variants_list)) {
226 break;
227 }
228 item = last_elem(&fpme->llvm->vs_variants_list);
229 assert(item);
230 assert(item->base);
231 draw_llvm_destroy_variant(item->base);
232 }
233 }
234
235 variant = draw_llvm_create_variant(fpme->llvm, nr, key);
236
237 if (variant) {
238 insert_at_head(&shader->variants, &variant->list_item_local);
239 insert_at_head(&fpme->llvm->vs_variants_list,
240 &variant->list_item_global);
241 fpme->llvm->nr_variants++;
242 shader->variants_cached++;
243 }
244 }
245
246 fpme->current_variant = variant;
247 }
248
249 if (gs) {
250 llvm_middle_end_prepare_gs(fpme);
251 }
252 }
253
254
255 /**
256 * Bind/update constant buffer pointers, clip planes and viewport dims.
257 * These are "light weight" parameters which aren't baked into the
258 * generated code. Updating these items is much cheaper than revalidating
259 * and rebuilding the generated pipeline code.
260 */
261 static void
262 llvm_middle_end_bind_parameters(struct draw_pt_middle_end *middle)
263 {
264 struct llvm_middle_end *fpme = (struct llvm_middle_end *)middle;
265 struct draw_context *draw = fpme->draw;
266 unsigned i;
267
268 for (i = 0; i < Elements(fpme->llvm->jit_context.vs_constants); ++i) {
269 fpme->llvm->jit_context.vs_constants[i] = draw->pt.user.vs_constants[i];
270 }
271 for (i = 0; i < Elements(fpme->llvm->gs_jit_context.constants); ++i) {
272 fpme->llvm->gs_jit_context.constants[i] = draw->pt.user.gs_constants[i];
273 }
274
275 fpme->llvm->jit_context.planes =
276 (float (*)[DRAW_TOTAL_CLIP_PLANES][4]) draw->pt.user.planes[0];
277 fpme->llvm->gs_jit_context.planes =
278 (float (*)[DRAW_TOTAL_CLIP_PLANES][4]) draw->pt.user.planes[0];
279
280 fpme->llvm->jit_context.viewport = (float *) draw->viewport.scale;
281 fpme->llvm->gs_jit_context.viewport = (float *) draw->viewport.scale;
282 }
283
284
285 static void pipeline(struct llvm_middle_end *llvm,
286 const struct draw_vertex_info *vert_info,
287 const struct draw_prim_info *prim_info)
288 {
289 if (prim_info->linear)
290 draw_pipeline_run_linear( llvm->draw,
291 vert_info,
292 prim_info);
293 else
294 draw_pipeline_run( llvm->draw,
295 vert_info,
296 prim_info );
297 }
298
299 static void emit(struct pt_emit *emit,
300 const struct draw_vertex_info *vert_info,
301 const struct draw_prim_info *prim_info)
302 {
303 if (prim_info->linear) {
304 draw_pt_emit_linear(emit, vert_info, prim_info);
305 }
306 else {
307 draw_pt_emit(emit, vert_info, prim_info);
308 }
309 }
310
311 static void
312 llvm_pipeline_generic( struct draw_pt_middle_end *middle,
313 const struct draw_fetch_info *fetch_info,
314 const struct draw_prim_info *in_prim_info )
315 {
316 struct llvm_middle_end *fpme = (struct llvm_middle_end *)middle;
317 struct draw_context *draw = fpme->draw;
318 struct draw_geometry_shader *gshader = draw->gs.geometry_shader;
319 struct draw_prim_info gs_prim_info;
320 struct draw_vertex_info llvm_vert_info;
321 struct draw_vertex_info gs_vert_info;
322 struct draw_vertex_info *vert_info;
323 struct draw_prim_info ia_prim_info;
324 struct draw_vertex_info ia_vert_info;
325 const struct draw_prim_info *prim_info = in_prim_info;
326 boolean free_prim_info = FALSE;
327 unsigned opt = fpme->opt;
328 unsigned clipped = 0;
329
330 llvm_vert_info.count = fetch_info->count;
331 llvm_vert_info.vertex_size = fpme->vertex_size;
332 llvm_vert_info.stride = fpme->vertex_size;
333 llvm_vert_info.verts =
334 (struct vertex_header *)MALLOC(fpme->vertex_size *
335 align(fetch_info->count, lp_native_vector_width / 32));
336 if (!llvm_vert_info.verts) {
337 assert(0);
338 return;
339 }
340 if (draw->collect_statistics) {
341 draw->statistics.ia_vertices += fetch_info->count;
342 draw->statistics.ia_primitives +=
343 u_decomposed_prims_for_vertices(prim_info->prim, fetch_info->count);
344 draw->statistics.vs_invocations += fetch_info->count;
345 }
346
347 if (fetch_info->linear)
348 clipped = fpme->current_variant->jit_func( &fpme->llvm->jit_context,
349 llvm_vert_info.verts,
350 (const char **)draw->pt.user.vbuffer,
351 fetch_info->start,
352 fetch_info->count,
353 fpme->vertex_size,
354 draw->pt.vertex_buffer,
355 draw->instance_id);
356 else
357 clipped = fpme->current_variant->jit_func_elts( &fpme->llvm->jit_context,
358 llvm_vert_info.verts,
359 (const char **)draw->pt.user.vbuffer,
360 fetch_info->elts,
361 fetch_info->count,
362 fpme->vertex_size,
363 draw->pt.vertex_buffer,
364 draw->instance_id);
365
366 /* Finished with fetch and vs:
367 */
368 fetch_info = NULL;
369 vert_info = &llvm_vert_info;
370
371
372 if ((opt & PT_SHADE) && gshader) {
373 struct draw_vertex_shader *vshader = draw->vs.vertex_shader;
374 draw_geometry_shader_run(gshader,
375 draw->pt.user.gs_constants,
376 draw->pt.user.gs_constants_size,
377 vert_info,
378 prim_info,
379 &vshader->info,
380 &gs_vert_info,
381 &gs_prim_info);
382
383 FREE(vert_info->verts);
384 vert_info = &gs_vert_info;
385 prim_info = &gs_prim_info;
386 } else {
387 if (draw_prim_assembler_is_required(draw, prim_info, vert_info)) {
388 draw_prim_assembler_run(draw, prim_info, vert_info,
389 &ia_prim_info, &ia_vert_info);
390
391 if (ia_vert_info.count) {
392 FREE(vert_info->verts);
393 vert_info = &ia_vert_info;
394 prim_info = &ia_prim_info;
395 free_prim_info = TRUE;
396 }
397 }
398 }
399
400 /* stream output needs to be done before clipping */
401 draw_pt_so_emit( fpme->so_emit, vert_info, prim_info );
402
403 /*
404 * if there's no position, need to stop now, or the latter stages
405 * will try to access non-existent position output.
406 */
407 if (draw_current_shader_position_output(draw) != -1) {
408 if ((opt & PT_SHADE) && gshader) {
409 clipped = draw_pt_post_vs_run( fpme->post_vs, vert_info );
410 }
411 if (clipped) {
412 opt |= PT_PIPELINE;
413 }
414
415 /* Do we need to run the pipeline? Now will come here if clipped
416 */
417 if (opt & PT_PIPELINE) {
418 pipeline( fpme, vert_info, prim_info );
419 }
420 else {
421 emit( fpme->emit, vert_info, prim_info );
422 }
423 }
424 FREE(vert_info->verts);
425 if (free_prim_info) {
426 FREE(prim_info->primitive_lengths);
427 }
428 }
429
430
431 static void llvm_middle_end_run( struct draw_pt_middle_end *middle,
432 const unsigned *fetch_elts,
433 unsigned fetch_count,
434 const ushort *draw_elts,
435 unsigned draw_count,
436 unsigned prim_flags )
437 {
438 struct llvm_middle_end *fpme = (struct llvm_middle_end *)middle;
439 struct draw_fetch_info fetch_info;
440 struct draw_prim_info prim_info;
441
442 fetch_info.linear = FALSE;
443 fetch_info.start = 0;
444 fetch_info.elts = fetch_elts;
445 fetch_info.count = fetch_count;
446
447 prim_info.linear = FALSE;
448 prim_info.start = 0;
449 prim_info.count = draw_count;
450 prim_info.elts = draw_elts;
451 prim_info.prim = fpme->input_prim;
452 prim_info.flags = prim_flags;
453 prim_info.primitive_count = 1;
454 prim_info.primitive_lengths = &draw_count;
455
456 llvm_pipeline_generic( middle, &fetch_info, &prim_info );
457 }
458
459
460 static void llvm_middle_end_linear_run( struct draw_pt_middle_end *middle,
461 unsigned start,
462 unsigned count,
463 unsigned prim_flags)
464 {
465 struct llvm_middle_end *fpme = (struct llvm_middle_end *)middle;
466 struct draw_fetch_info fetch_info;
467 struct draw_prim_info prim_info;
468
469 fetch_info.linear = TRUE;
470 fetch_info.start = start;
471 fetch_info.count = count;
472 fetch_info.elts = NULL;
473
474 prim_info.linear = TRUE;
475 prim_info.start = 0;
476 prim_info.count = count;
477 prim_info.elts = NULL;
478 prim_info.prim = fpme->input_prim;
479 prim_info.flags = prim_flags;
480 prim_info.primitive_count = 1;
481 prim_info.primitive_lengths = &count;
482
483 llvm_pipeline_generic( middle, &fetch_info, &prim_info );
484 }
485
486
487
488 static boolean
489 llvm_middle_end_linear_run_elts( struct draw_pt_middle_end *middle,
490 unsigned start,
491 unsigned count,
492 const ushort *draw_elts,
493 unsigned draw_count,
494 unsigned prim_flags )
495 {
496 struct llvm_middle_end *fpme = (struct llvm_middle_end *)middle;
497 struct draw_fetch_info fetch_info;
498 struct draw_prim_info prim_info;
499
500 fetch_info.linear = TRUE;
501 fetch_info.start = start;
502 fetch_info.count = count;
503 fetch_info.elts = NULL;
504
505 prim_info.linear = FALSE;
506 prim_info.start = 0;
507 prim_info.count = draw_count;
508 prim_info.elts = draw_elts;
509 prim_info.prim = fpme->input_prim;
510 prim_info.flags = prim_flags;
511 prim_info.primitive_count = 1;
512 prim_info.primitive_lengths = &draw_count;
513
514 llvm_pipeline_generic( middle, &fetch_info, &prim_info );
515
516 return TRUE;
517 }
518
519
520
521 static void llvm_middle_end_finish( struct draw_pt_middle_end *middle )
522 {
523 /* nothing to do */
524 }
525
526 static void llvm_middle_end_destroy( struct draw_pt_middle_end *middle )
527 {
528 struct llvm_middle_end *fpme = (struct llvm_middle_end *)middle;
529
530 if (fpme->fetch)
531 draw_pt_fetch_destroy( fpme->fetch );
532
533 if (fpme->emit)
534 draw_pt_emit_destroy( fpme->emit );
535
536 if (fpme->so_emit)
537 draw_pt_so_emit_destroy( fpme->so_emit );
538
539 if (fpme->post_vs)
540 draw_pt_post_vs_destroy( fpme->post_vs );
541
542 FREE(middle);
543 }
544
545
546 struct draw_pt_middle_end *
547 draw_pt_fetch_pipeline_or_emit_llvm(struct draw_context *draw)
548 {
549 struct llvm_middle_end *fpme = 0;
550
551 if (!draw->llvm)
552 return NULL;
553
554 fpme = CALLOC_STRUCT( llvm_middle_end );
555 if (!fpme)
556 goto fail;
557
558 fpme->base.prepare = llvm_middle_end_prepare;
559 fpme->base.bind_parameters = llvm_middle_end_bind_parameters;
560 fpme->base.run = llvm_middle_end_run;
561 fpme->base.run_linear = llvm_middle_end_linear_run;
562 fpme->base.run_linear_elts = llvm_middle_end_linear_run_elts;
563 fpme->base.finish = llvm_middle_end_finish;
564 fpme->base.destroy = llvm_middle_end_destroy;
565
566 fpme->draw = draw;
567
568 fpme->fetch = draw_pt_fetch_create( draw );
569 if (!fpme->fetch)
570 goto fail;
571
572 fpme->post_vs = draw_pt_post_vs_create( draw );
573 if (!fpme->post_vs)
574 goto fail;
575
576 fpme->emit = draw_pt_emit_create( draw );
577 if (!fpme->emit)
578 goto fail;
579
580 fpme->so_emit = draw_pt_so_emit_create( draw );
581 if (!fpme->so_emit)
582 goto fail;
583
584 fpme->llvm = draw->llvm;
585 if (!fpme->llvm)
586 goto fail;
587
588 fpme->current_variant = NULL;
589
590 return &fpme->base;
591
592 fail:
593 if (fpme)
594 llvm_middle_end_destroy( &fpme->base );
595
596 return NULL;
597 }